nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1001 |
Extraction of samarium using a serpentine Y-junction microreactor with 2-ethylhexyl phosphonic acid mono-2-ethylhexyl
|
He, Yuan |
|
2018 |
127-128 |
C |
p. 175-180 |
artikel |
1002 |
Extraction of scandium from scandium-rich material derived from bauxite ore residues
|
Li, Guanghui |
|
2018 |
127-128 |
C |
p. 62-68 |
artikel |
1003 |
Extraction of scattered and precious metals from lead anode slime: A short review
|
Gao, Zhe |
|
|
127-128 |
C |
p. |
artikel |
1004 |
Extraction of tellurium and high purity bismuth from processing residue of zinc anode slime by sulfation roasting-leaching-electrodeposition process
|
Fan, Jinlong |
|
|
127-128 |
C |
p. |
artikel |
1005 |
Extraction of tungsten from scheelite concentrate using a methanesulfonic acid- phosphoric acid coleaching process followed by solvent extraction with N1923
|
Li, Jiangtao |
|
|
127-128 |
C |
p. |
artikel |
1006 |
Extraction of uranium from sulfuric acid media using amino-diamide extractants
|
Wehbie, Moheddine |
|
|
127-128 |
C |
p. |
artikel |
1007 |
Extraction of valuable metals from lepidolite
|
Yan, Qunxuan |
|
2012 |
127-128 |
C |
p. 116-118 3 p. |
artikel |
1008 |
Extraction of valuable metals from low-grade nickel matte by FeCl3·6H2O roasting and water leaching process with studies on phase evolution and kinetics analysis of chlorination process
|
Mu, Wenning |
|
|
127-128 |
C |
p. |
artikel |
1009 |
Extraction of valuable metals from manganese–silver ore
|
Tian, Qing-hua |
|
2012 |
127-128 |
C |
p. 8-15 8 p. |
artikel |
1010 |
Extraction of vanadium and enrichment of titanium from modified Ti-bearing blast furnace slag
|
Han, Jiqing |
|
|
127-128 |
C |
p. |
artikel |
1011 |
Extraction of vanadium from direct acid leaching solution of clay vanadium ore using solvent extraction with N235
|
Ye, Guohua |
|
2018 |
127-128 |
C |
p. 27-33 |
artikel |
1012 |
Extraction of zinc from spent pickle liquor using primary amine extraction system
|
Hu, Shuxuan |
|
|
127-128 |
C |
p. |
artikel |
1013 |
Extractive recovery of palladium(II) from hydrochloric acid solutions with Cyphos®IL 104
|
Cieszynska, Anna |
|
2012 |
127-128 |
C |
p. 79-85 7 p. |
artikel |
1014 |
Extractive separation studies of manganese from spent lithium battery leachate using mixture of PC88A and Versatic 10 acid in kerosene
|
Joo, Sung-Ho |
|
2015 |
127-128 |
C |
p. 136-141 6 p. |
artikel |
1015 |
Facile and novel method for the recovery of gold from a calcined concentrate via copper–ammonia -thiourea system and activated carbon
|
Lin, Yue |
|
|
127-128 |
C |
p. |
artikel |
1016 |
Facile method for preparing a nano lead powder by vacuum decomposition from spent lead-acid battery paste: leaching and desulfuration in tartaric acid and sodium tartrate mixed lixivium
|
Ye, Longgang |
|
|
127-128 |
C |
p. |
artikel |
1017 |
Facile one-step synthesis of a Co3O4- and CNT-doped 3D-Ti/PbO2 electrode with a high surface for zinc electrowinning
|
Wang, Xuanbing |
|
|
127-128 |
C |
p. |
artikel |
1018 |
Factorial experiments for iron removal from kaolin by using single and two-step leaching with sulfuric acid
|
Tuncuk, A. |
|
2013 |
127-128 |
C |
p. 80-86 7 p. |
artikel |
1019 |
Factors affecting crystallization of copper sulfide in fed-batch fluidized bed reactor
|
Chung, Jaeshik |
|
2015 |
127-128 |
C |
p. 107-112 6 p. |
artikel |
1020 |
Factors affecting hematite precipitation and characterization of the product from simulated sulphate-chloride solutions at 150 °C
|
Javed, Tasawar |
|
2018 |
127-128 |
C |
p. 8-19 |
artikel |
1021 |
Factors affecting purity of ammonium para-tungstate (APT) prepared from wolframite ((Fe, Mn)WO4) concentrate by NaHSO4·H2O roasting, water/ammonia leaching and evaporation crystallization
|
Pu, Ting |
|
|
127-128 |
C |
p. |
artikel |
1022 |
Factors affecting the extraction of lithium from lepidolite
|
Luong, Van Tri |
|
2013 |
127-128 |
C |
p. 54-61 8 p. |
artikel |
1023 |
Failure and regeneration of hydroxyoxime in copper solvent extraction process: A review
|
Xie, Qionghua |
|
|
127-128 |
C |
p. |
artikel |
1024 |
Feasibility of bench-scale selective bioflotation of copper oxide minerals using Rhodococcus opacus
|
Kim, Gahee |
|
2017 |
127-128 |
C |
p. 94-102 |
artikel |
1025 |
Feasibility of electrokinetic in situ leaching of gold
|
Martens, Evelien |
|
2018 |
127-128 |
C |
p. 70-78 |
artikel |
1026 |
Fe(II)-induced transformation of Jarosite residues generated from zinc hydrometallurgy: Influence on metals behaviors during acid washing
|
Wu, Jiahui |
|
|
127-128 |
C |
p. |
artikel |
1027 |
Ferric chloride leaching of antimony from stibnite
|
Ye, Longgang |
|
2019 |
127-128 |
C |
p. 210-217 |
artikel |
1028 |
Ferrous iron oxidation kinetics of Acidiplasma cupricumulans, a key archaeon in the mineral biooxidation consortium: Impact of nutrient availability, ferric iron and thiocyanate
|
Edward, Catherine J. |
|
|
127-128 |
C |
p. |
artikel |
1029 |
Field scale phytoremediation experiments on a heavy metal and uranium contaminated site, and further utilization of the plant residues
|
Willscher, S. |
|
2013 |
127-128 |
C |
p. 46-53 8 p. |
artikel |
1030 |
First-principle study on the oxidative leaching mechanism of sphalerite in Ammoniacal solution
|
Huang, Yaling |
|
2018 |
127-128 |
C |
p. 198-206 |
artikel |
1031 |
Flow and mass transfer modelling for copper electrowinning: development of instabilities along electrodes
|
Leahy, Martin J. |
|
2014 |
127-128 |
C |
p. 41-53 13 p. |
artikel |
1032 |
Flow field characterization in the vicinity of vertical plane electrodes in a bench-scale zinc electrowinning cell
|
Luo, Jin |
|
2018 |
127-128 |
C |
p. 103-112 |
artikel |
1033 |
Fluidized roasting-stage leaching of a silver and gold bearing polymetallic sulfide concentrate
|
Xu, Bin |
|
2014 |
127-128 |
C |
p. 79-82 4 p. |
artikel |
1034 |
Fluoride removal from Double Leached Waelz Oxide leach solutions as alternative feeds to Zinc Calcine leaching liquors in the electrolytic zinc production process
|
Antuñano, N. |
|
2016 |
127-128 |
C |
p. 65-70 6 p. |
artikel |
1035 |
Fluorite enhanced magnesium recovery from serpentine tailings: Kinetics and reaction mechanisms
|
Peng, Xiangyu |
|
|
127-128 |
C |
p. |
artikel |
1036 |
Foreword
|
Rosenberg, Steven P |
|
2017 |
127-128 |
C |
p. 1 |
artikel |
1037 |
Formation behavior of tricalcium aluminate hexahydrate in synthetic sodium aluminate solution with high alkali concentration and caustic ratio
|
Pan, Xiaolin |
|
|
127-128 |
C |
p. |
artikel |
1038 |
Formation mechanism of an undesirable by-product in the mild hydro-chemical process for the extraction of alumina from fly ash and its mitigation
|
Ding, Jian |
|
2019 |
127-128 |
C |
p. 292-300 |
artikel |
1039 |
Formation mechanisms of surface passivating phases and their impact on the kinetics of galena leaching in ferric chloride, ferric perchlorate, and ferric nitrate solutions
|
Nikkhou, Fatemeh |
|
|
127-128 |
C |
p. |
artikel |
1040 |
Formation of hydrogen peroxide by sulphide minerals
|
Javadi Nooshabadi, Alireza |
|
2014 |
127-128 |
C |
p. 82-88 7 p. |
artikel |
1041 |
Formation of iron hydroxysulphate phases in the hematite process by hydrolysis of ferric sulphate
|
Li, Cunxiong |
|
2019 |
127-128 |
C |
p. |
artikel |
1042 |
Fractional crystallization for extracting lithium from Cha'erhan tail brine
|
Liu, Weiping |
|
2017 |
127-128 |
C |
p. 124-128 5 p. |
artikel |
1043 |
Fractional order fuzzy PID optimal control in copper removal process of zinc hydrometallurgy
|
Zhang, Fengxue |
|
2018 |
127-128 |
C |
p. 60-76 |
artikel |
1044 |
From understanding the rate limitations of bioleaching mechanisms to improved bioleach process design
|
Petersen, Jochen |
|
|
127-128 |
C |
p. |
artikel |
1045 |
Functionalized nanoporous silicon for extraction of Sc from a leach solution
|
Rahmani, Arezoo |
|
|
127-128 |
C |
p. |
artikel |
1046 |
Fundamentals of copper(II) adsorption on phyllosilicate minerals relevant to crud formation in solvent extraction from heap leach liquors
|
Valenzuela-Elgueta, J. |
|
|
127-128 |
C |
p. |
artikel |
1047 |
Fundamental study of lead recovery from cerussite concentrate with methanesulfonic acid (MSA)
|
Wu, Zhenghui |
|
2014 |
127-128 |
C |
p. 23-35 13 p. |
artikel |
1048 |
Fungal degradation of elemental carbon in Carbonaceous gold ore
|
Liu, Qian |
|
2016 |
127-128 |
C |
p. 90-97 8 p. |
artikel |
1049 |
Fungal treatment of lignites with higher ash and sulphur contents using drum type reactor
|
Şener, Büşra |
|
2018 |
127-128 |
C |
p. 64-74 |
artikel |
1050 |
Further improvement for separation of heavy rare earths by mixtures of acidic organophosphorus extractants
|
Liu, Tianchi |
|
2019 |
127-128 |
C |
p. 73-80 |
artikel |
1051 |
Gallium and vanadium extraction from red mud of Turkish alumina refinery plant: Hydrogarnet process
|
Abdulvaliyev, R.A. |
|
2015 |
127-128 |
C |
p. 72-77 6 p. |
artikel |
1052 |
Gallium recovery from aluminum smelting slag via a novel combined process of bioleaching and chemical methods
|
Wang, Jia |
|
2018 |
127-128 |
C |
p. 140-145 |
artikel |
1053 |
Generalized shrinking particle model of leaching: Effect of the order of surface chemical reaction, liquid-to-solid ratio and non-ideal behaviour of the liquid phase
|
Popovič, Ľuboš |
|
|
127-128 |
C |
p. |
artikel |
1054 |
Gold and copper leaching from gold-copper ores and concentrates using a synergistic lixiviant mixture of glycine and cyanide
|
Oraby, E.A. |
|
2017 |
127-128 |
C |
p. 339-345 |
artikel |
1055 |
Gold deportment and leaching study from a pressure oxidation residue of chalcopyrite concentrate
|
Wu, Jiajia |
|
|
127-128 |
C |
p. |
artikel |
1056 |
Gold extraction from Carlin-type concentrate by a novel environmentally friendly lixiviant
|
Guo, Xue-Yi |
|
|
127-128 |
C |
p. |
artikel |
1057 |
Gold leaching by copper(II) in ammoniacal thiosulphate solutions in the presence of additives. Part I: A review of the effect of hard–soft and Lewis acid-base properties and interactions of ions
|
Senanayake, G. |
|
2012 |
127-128 |
C |
p. 1-20 20 p. |
artikel |
1058 |
Gold leaching by copper(II) in ammoniacal thiosulphate solutions in the presence of additives. Part II: Effect of residual Cu(II), pH and redox potentials on reactivity of colloidal gold
|
Senanayake, G. |
|
2012 |
127-128 |
C |
p. 21-29 9 p. |
artikel |
1059 |
Gold leaching from oxide ores in alkaline glycine solutions in the presence of permanganate
|
Oraby, E.A. |
|
|
127-128 |
C |
p. |
artikel |
1060 |
Gold leaching in cyanide-starved copper solutions in the presence of glycine
|
Oraby, E.A. |
|
2015 |
127-128 |
C |
p. 81-88 8 p. |
artikel |
1061 |
Gold recovery from ammonia-thiosulfate leaching solution assisted by PEI-functionalized magnetite nanoparticles
|
Betancur, Juan C. |
|
2019 |
127-128 |
C |
p. |
artikel |
1062 |
Gold recovery from chloride leach solution of TCCA using D301 anion exchange resin and elution with thiourea
|
Niu, Huiqun |
|
|
127-128 |
C |
p. |
artikel |
1063 |
Gold recovery from copper anode slime by means of magnetite nanoparticles (MNPs)
|
Ranjbar, R. |
|
2014 |
127-128 |
C |
p. 54-59 6 p. |
artikel |
1064 |
Gold recovery from cyanidation residue by chloride leaching and carbon adsorption – Preliminary results from CICL process
|
Karppinen, Anssi |
|
|
127-128 |
C |
p. |
artikel |
1065 |
Gold recovery from cyanide-starved glycine solutions in the presence of Cu using a molecularly imprinted resin (IXOS-AuC)
|
Deng, Z. |
|
|
127-128 |
C |
p. |
artikel |
1066 |
Gold recovery from roasted refractory gold concentrate through cyclic extraction using MnO2-assisted thiocyanate leaching and cementation with zinc powder
|
Li, Weiyao |
|
|
127-128 |
C |
p. |
artikel |
1067 |
Gold recovery from waste electrical and electronic equipment by electrodeposition: A feasibility study
|
Lekka, M. |
|
2015 |
127-128 |
C |
p. 97-106 10 p. |
artikel |
1068 |
Grafting of organic sulfur-containing functional groups on activated carbon for gold(I) adsorption from thiosulfate solution
|
Chen, Yunlong |
|
2019 |
127-128 |
C |
p. 102-110 |
artikel |
1069 |
Green and efficient recovery of valuable metals from spent lithium-ion batteries using molasses: Parametric optimization and performance evaluation.
|
Okonkwo, Emenike G. |
|
|
127-128 |
C |
p. |
artikel |
1070 |
Green and low-carbon preparation of ammonium paratungstate by adding ammonia to ammonium metatungstate solution
|
Zhang, Liming |
|
|
127-128 |
C |
p. |
artikel |
1071 |
Green synthesis of tellurium nanoparticles by tellurate and tellurite reduction using Aeromonas hydrophila under different aeration conditions
|
Castro, Laura |
|
|
127-128 |
C |
p. |
artikel |
1072 |
Heap leach pad mapping with drone-based hyperspectral remote sensing at the Safford Copper Mine, Arizona
|
He, Jingping |
|
|
127-128 |
C |
p. |
artikel |
1073 |
Heavy metal adsorption using biogenic iron compounds
|
Castro, Laura |
|
2018 |
127-128 |
C |
p. 44-51 |
artikel |
1074 |
High adsorption performance of the Mo-doped titanium oxide sieve for lithium ions
|
Wang, Shulei |
|
2019 |
127-128 |
C |
p. 30-37 |
artikel |
1075 |
High efficiency separation of bastnaesite (REFCO3) and monazite (REPO4) in mixed rare earth concentrate by heating under N2 and leaching with HCl/AlCl3
|
He, Jiahao |
|
|
127-128 |
C |
p. |
artikel |
1076 |
Highly efficient and selective adsorption of palladium(II) from simulated nuclear waste solution using Amberlite XAD-7 resin impregnated with a phenanthroline-derived diamide
|
Xiao, Qian |
|
|
127-128 |
C |
p. |
artikel |
1077 |
Highly efficient diluent-free solvent extraction of uranium using mixtures of protonated trioctylamine and quaternary ammonium salts. Comparative Life Cycle Assessment with the conventional extractant
|
Guerinoni, Elise |
|
|
127-128 |
C |
p. |
artikel |
1078 |
Highly efficient pretreatment for refractory gold ores using persulfate, catalyst and free radical based advanced oxidation processes to improve cyanidation
|
Barbouchi, Abdelkhalek |
|
|
127-128 |
C |
p. |
artikel |
1079 |
Highly efficient solid phase extraction of uranium with TOPO-menthol based eutectic solvent as stationary phase from acidic feed relevant to front-end applications
|
Rao, Ankita |
|
|
127-128 |
C |
p. |
artikel |
1080 |
Highly selective separation of germanium from sulfuric solution using an anion exchange D201 × 7 resin with tartaric acid
|
He, Chunlin |
|
|
127-128 |
C |
p. |
artikel |
1081 |
High pressure acid leaching of low germanium bearing silica residue (GRS): Characterization of leach residue and mechanistic details of germanium leaching
|
Li, Yuhu |
|
|
127-128 |
C |
p. |
artikel |
1082 |
High purity alumina synthesised from iron rich clay through a novel and selective hybrid ammonium alum process
|
Pepper, Rachel A. |
|
|
127-128 |
C |
p. |
artikel |
1083 |
High purity scandium extraction from red mud by novel simple technology
|
Pasechnik, L.A. |
|
|
127-128 |
C |
p. |
artikel |
1084 |
High-quality and efficient zinc electrodeposition in a polyethylene glycol 20,000-assisted ammonia solution
|
Duan, Lianghong |
|
|
127-128 |
C |
p. |
artikel |
1085 |
High-rate precipitation of iron as jarosite by using a combination process of electrolytic reduction and biological oxidation
|
Song, Yongwei |
|
2014 |
127-128 |
C |
p. 23-27 5 p. |
artikel |
1086 |
High selectivity and extractability of palladium from chloride leach liquors of an automotive catalyst residue by azothiacalix[4]arene derivative
|
Senthil, Kannan |
|
2017 |
127-128 |
C |
p. 478-487 |
artikel |
1087 |
High selectivity of new thiourea-modified resins for gold: Adsorption performance, mechanism, and recovery
|
Liu, Chaopeng |
|
|
127-128 |
C |
p. |
artikel |
1088 |
Hollow drop bubbles: A preliminary study of simplified prototype for improving copper(II) extraction with ACORGA® M5640 using coated bubble swarm
|
Poblete, Diego |
|
|
127-128 |
C |
p. |
artikel |
1089 |
Homogeneous nucleation of Al(OH)3 crystals from supersaturated sodium aluminate solution investigated by in situ conductivity
|
Li, Jun |
|
2016 |
127-128 |
C |
p. 77-82 6 p. |
artikel |
1090 |
Hydrochloric acid leaching of rare earth elements from a novel source of deep-sea sediments and advantage of reduction with H2O2
|
Zhang, Kuifang |
|
|
127-128 |
C |
p. |
artikel |
1091 |
Hydrogen evolution behavior of aluminum cathode in comparison with stainless steel for electrowinning of manganese in sulfate solution
|
Yang, Fan |
|
2018 |
127-128 |
C |
p. 245-253 |
artikel |
1092 |
Hydrolysis of TiOCl2 leached and purified from low-grade ilmenite mineral
|
Mostafa, Nasser Y. |
|
2013 |
127-128 |
C |
p. 88-94 7 p. |
artikel |
1093 |
Hydrometallurgical leaching process intensified by an electric field for converter vanadium slag
|
Liu, Zuohua |
|
2015 |
127-128 |
C |
p. 56-60 5 p. |
artikel |
1094 |
Hydrometallurgical preparation of lithium carbonate from lithium-rich electrolyte
|
Wang, Wei |
|
2019 |
127-128 |
C |
p. 88-92 |
artikel |
1095 |
Hydrometallurgical processes for recovery of valuable and critical metals from spent car NiMH batteries optimized in a pilot plant scale
|
Petranikova, Martina |
|
2017 |
127-128 |
C |
p. 128-141 14 p. |
artikel |
1096 |
Hydrometallurgical processing of lithium, potassium, and boron for the comprehensive utilization of Da Qaidam lake brine via natural evaporation and freezing
|
Bian, Shaoju |
|
2017 |
127-128 |
C |
p. 80-83 4 p. |
artikel |
1097 |
Hydrometallurgical processing of magnesium minerals – A review
|
González, Yessica |
|
|
127-128 |
C |
p. |
artikel |
1098 |
Hydrometallurgical processing of mining-impacted soils: A preliminary study to recover copper salts by leaching with seawater and crystallization
|
Cortés, Sonia |
|
|
127-128 |
C |
p. |
artikel |
1099 |
Hydrometallurgical processing of spent selective catalytic reduction (SCR) catalyst for recovery of tungsten
|
Choi, In-hyeok |
|
2018 |
127-128 |
C |
p. 137-145 |
artikel |
1100 |
Hydrometallurgical processing of waste multilayer ceramic capacitors (MLCCs) to recover silver and palladium
|
Panda, Rekha |
|
|
127-128 |
C |
p. |
artikel |
1101 |
Hydrometallurgical process of spent lithium-ion battery recycling Part. 1 Chemical leaching of valuable metals from cathode active materials: Review and case study
|
Lee, Chaehyeon |
|
|
127-128 |
C |
p. |
artikel |
1102 |
Hydrometallurgical process of spent lithium-ion battery recycling Part. 2 Recovery of valuable metals from the cathode active material leachates: Review and cost analysis
|
Lim, Junghyun |
|
|
127-128 |
C |
p. |
artikel |
1103 |
Hydrometallurgical production of LiNi0.80Co0.15Al0.05O2 cathode material from high-grade nickel matte
|
Xi, Zhao |
|
2019 |
127-128 |
C |
p. 30-41 |
artikel |
1104 |
Hydrometallurgical purification of solar cell silicon scraps through chemical etching with HF-HNO3-H2SO4
|
Guo, Xiaolin |
|
|
127-128 |
C |
p. |
artikel |
1105 |
Hydrometallurgical recovery of copper from complex mixtures of end-of-life shredded ICT products
|
Xiao, Yanping |
|
2013 |
127-128 |
C |
p. 128-134 7 p. |
artikel |
1106 |
Hydrometallurgical recovery of lead from spent lead-acid battery paste via leaching and electrowinning in chloride solution
|
Xing, Peng |
|
2019 |
127-128 |
C |
p. |
artikel |
1107 |
Hydrometallurgical recovery of manganese, gold and silver from refractory Au-Ag ore by two-stage reductive acid and cyanidation leaching
|
Zhang, Kuifang |
|
|
127-128 |
C |
p. |
artikel |
1108 |
Hydrometallurgical recovery/recycling of platinum by the leaching of spent catalysts: A review
|
Jha, Manis Kumar |
|
2013 |
127-128 |
C |
p. 23-32 10 p. |
artikel |
1109 |
Hydrometallurgical separation of copper and cobalt from lithium-ion batteries using aqueous two-phase systems
|
Leite, Daniela da Silveira |
|
2017 |
127-128 |
C |
p. 245-252 |
artikel |
1110 |
Hydrometallurgical stepwise recovery of copper and zinc from smelting slag of waste brass in ammonium chloride solution
|
Xia, Zhimei |
|
|
127-128 |
C |
p. |
artikel |
1111 |
Hydrothermal decomposition of K-feldspar in KOH–NaOH–H2O medium
|
Su, Shuangqing |
|
2015 |
127-128 |
C |
p. 47-52 6 p. |
artikel |
1112 |
Hydrothermal formation mechanism of the efficient desilication product hydroandradite (3CaO·Fe2O3·xSiO2·(6-2x)H2O)
|
Pan, Xiaolin |
|
|
127-128 |
C |
p. |
artikel |
1113 |
Hydrothermal precipitation of artificial violarite
|
Jørgensen, W.H. |
|
2012 |
127-128 |
C |
p. 98-103 6 p. |
artikel |
1114 |
Hydrothermal precipitation of V3+ ions in V-bearing oxalic acid leachate to prepare V2O3
|
Chen, Xuexin |
|
|
127-128 |
C |
p. |
artikel |
1115 |
Hydrothermal pretreatment of chalcopyrite concentrate with copper sulfate solution
|
Aleksei, Kritskii |
|
|
127-128 |
C |
p. |
artikel |
1116 |
Identification and regeneration of degradation products from phenolic hydroxyoxime-based extractant in long-term copper solvent extraction plant
|
Li, Guoyao |
|
2019 |
127-128 |
C |
p. 112-117 |
artikel |
1117 |
Identification of elements hindering gold leaching from gold-bearing dust and selection of gold extraction process
|
Cao, Pan |
|
|
127-128 |
C |
p. |
artikel |
1118 |
Identification of processes in Cu-ore heap leaching using Cu isotopes and leachate chemistry at Tschudi mine, northern Namibia
|
Sracek, Ondra |
|
|
127-128 |
C |
p. |
artikel |
1119 |
Impact of entrained and dissolved organic chemicals associated with copper solvent extraction on Acidithiobacillus ferrooxidans
|
Liu, Xiaorong |
|
2015 |
127-128 |
C |
p. 207-213 7 p. |
artikel |
1120 |
Impact of mechanical activation and mechanochemical activation on natural pyrite dissolution
|
Akhgar, B.N. |
|
2015 |
127-128 |
C |
p. 83-87 5 p. |
artikel |
1121 |
Impact of precipitate characteristics and precipitation conditions on the settling performance of a sulfide precipitation process: An exhaustive characterization of the aggregation behavior
|
Gim-Krumm, Minghai |
|
2019 |
127-128 |
C |
p. |
artikel |
1122 |
Impact of the plutonium content on dissolution kinetics of (U1-xPux)O2±δ powders
|
Ziouane, Yannis |
|
|
127-128 |
C |
p. |
artikel |
1123 |
Impacts of operational parameters on the morphological structure and uranium bioleaching performance of bio-ore pellets in one-step bioleaching by Aspergillus niger
|
Sun, Jing |
|
|
127-128 |
C |
p. |
artikel |
1124 |
Implementation and practice of an integrated process to recover copper from low grade ore at Zijinshan mine
|
Chen, Jinghe |
|
|
127-128 |
C |
p. |
artikel |
1125 |
Implementation of biological and chemical techniques to recover metals from copper-rich leach solutions
|
Hedrich, Sabrina |
|
2018 |
127-128 |
C |
p. 274-281 |
artikel |
1126 |
Improved dynamic modeling and simulation of an industrial copper solvent extraction process
|
Shahcheraghi, Seyed Hadi |
|
2016 |
127-128 |
C |
p. 266-278 13 p. |
artikel |
1127 |
Improved thiosulfate leaching of a refractory gold concentrate calcine with additives
|
Xu, Bin |
|
2015 |
127-128 |
C |
p. 214-222 9 p. |
artikel |
1128 |
Improved thiourea leaching of gold from a gold ore using additives
|
Li, Ke |
|
|
127-128 |
C |
p. |
artikel |
1129 |
Improvement effect of organic ligands on chalcopyrite leaching in the aqueous medium of sulfuric acid‑hydrogen peroxide-ethylene glycol
|
Ruiz-Sánchez, A. |
|
|
127-128 |
C |
p. |
artikel |
1130 |
Improvement in atmospheric leaching of chalcopyrite concentrate using a new environmentally-friendly ionic liquid
|
Sahlabad, Mehdi Khojasteh |
|
|
127-128 |
C |
p. |
artikel |
1131 |
Improvement of chalcopyrite dissolution in acid media using polar organic solvents
|
Solis-Marcíal, O.J. |
|
2013 |
127-128 |
C |
p. 120-126 7 p. |
artikel |
1132 |
Improvement of scorodite stability by addition of crystalline polyferric sulfate
|
Ke, Pingchao |
|
2019 |
127-128 |
C |
p. 162-172 |
artikel |
1133 |
Improvements in the selective cementation of Cd and Ni/Co from zinc industrial electrolyte
|
Gonçalves, Daísa C.A. |
|
|
127-128 |
C |
p. |
artikel |
1134 |
Improve the energy efficiency: Effects of additives on longtime zinc electrowinning
|
Xu, Xiaolong |
|
|
127-128 |
C |
p. |
artikel |
1135 |
Improving acid-free and selective leaching of lithium from end-of-life LiFePO4 batteries using sodium persulfate: Impact of removing organic matter by thermal treatment in an inert atmosphere
|
Choi, Jong-Won |
|
|
127-128 |
C |
p. |
artikel |
1136 |
Improving gold recovery from a refractory ore via Na2SO4 assisted roasting and alkaline Na2S leaching
|
Liu, Xiaoliang |
|
2019 |
127-128 |
C |
p. 133-141 |
artikel |
1137 |
Improving gold recovery from refractory gold ores through biooxidation using iron-sulfur-oxidizing/sulfur-oxidizing mixotrophic bacteria
|
Mubarok, M.Z. |
|
2017 |
127-128 |
C |
p. 69-75 |
artikel |
1138 |
Improving recoveries of platinum and palladium from oxidized Platinum-Group Element ores of the Great Dyke, Zimbabwe, using the biogenic siderophore Desferrioxamine B
|
Kraemer, Dennis |
|
2015 |
127-128 |
C |
p. 169-177 9 p. |
artikel |
1139 |
Improving the separation of molybdenum from iron in acidic sulfate solutions due to the antagonistic effect
|
Zhang, Haojie |
|
2019 |
127-128 |
C |
p. 187-191 |
artikel |
1140 |
Improving the transfer of dissolved oxygen in a biological Fe2+ oxidation process using a venturi jet as an intensive aeration system
|
Morell, Joan |
|
|
127-128 |
C |
p. |
artikel |
1141 |
Improving the washing and desorption of tungsten-adsorbed weak base resin
|
Yi, Xintao |
|
|
127-128 |
C |
p. |
artikel |
1142 |
Improving zinc electrodeposition in ammoniacal electrolytes with the saturated dissolved methyltrioctylammonium chloride
|
Gu, Wanmiao |
|
2018 |
127-128 |
C |
p. 43-51 |
artikel |
1143 |
Impurities removal process for high-purity silica production from diatomite
|
Abdellaoui, Imane |
|
2018 |
127-128 |
C |
p. 207-214 |
artikel |
1144 |
Increase in gold dissolution in copper ammonia thiosulfate solution via cobalt surface modification
|
Nie, Yanhe |
|
|
127-128 |
C |
p. |
artikel |
1145 |
Increasing cell concentration does not affect specific ferrous iron oxidation rate in a continuously stirred tank bioreactor
|
Boxall, Naomi J. |
|
2018 |
127-128 |
C |
p. 189-194 |
artikel |
1146 |
Increasing precipitation rate from sodium aluminate solution by adding active seed and ammonia
|
Liu, Guihua |
|
2018 |
127-128 |
C |
p. 253-259 |
artikel |
1147 |
Increasing the heap leach efficiency of Uşak Kışladağ gold ore using nut shell as permeability aid
|
Yilmaz, Serdar |
|
|
127-128 |
C |
p. |
artikel |
1148 |
Indirect bioleaching of Co and Ni from iron rich laterite ore, using metabolic carboxylic acids generated by P. putida, P. koreensis, P. bilaji and A. niger
|
Hosseini Nasab, Marzieh |
|
|
127-128 |
C |
p. |
artikel |
1149 |
Indirect bioleaching of low-grade nickel limonite and saprolite ores using fungal metabolic organic acids generated by Aspergillus niger
|
Chaerun, Siti Khodijah |
|
2017 |
127-128 |
C |
p. 29-37 9 p. |
artikel |
1150 |
Indium recovery from discarded LCD panel glass by solvent extraction
|
Yang, Jiaxu |
|
2013 |
127-128 |
C |
p. 68-77 10 p. |
artikel |
1151 |
Induced crystallization of goethite precipitate from nickel sulfate solution by limonite seeding
|
Han, Haisheng |
|
2017 |
127-128 |
C |
p. 253-257 5 p. |
artikel |
1152 |
Influence of alternative alkali reagents on Fe removal during recovery of Mn as Electrolytic Manganese Dioxide (EMD) from Mn sludge
|
Biswal, Avijit |
|
2013 |
127-128 |
C |
p. 151-162 12 p. |
artikel |
1153 |
Influence of bioaugmentation with Ferroplasma thermophilum on chalcopyrite bioleaching and microbial community structure
|
Zhang, Lijuan |
|
2014 |
127-128 |
C |
p. 15-23 9 p. |
artikel |
1154 |
Influence of biosurfactants in the recovery of REE from monazite using Burkholderia thailandensis
|
Castro, Laura |
|
|
127-128 |
C |
p. |
artikel |
1155 |
Influence of different electrolysis parameters on electrodeposition of γ- and α-Mn from pure electrolytes — a review with special reference to Russian language literature
|
Sulcius, A. |
|
2013 |
127-128 |
C |
p. 33-37 5 p. |
artikel |
1156 |
Influence of ionic liquid (R4PSCN) for selective separation and recovery of copper from spent CuCr catalyst leach liquor
|
Behera, Saroj Sekhar |
|
|
127-128 |
C |
p. |
artikel |
1157 |
Influence of mechano-chemical activation on biooxidation of auriferous sulphides
|
Gordon, J.J.K. |
|
2012 |
127-128 |
C |
p. 77-83 7 p. |
artikel |
1158 |
Influence of microwave heating on the extractions of fluorine and Rare Earth elements from mixed rare earth concentrate
|
Huang, Yukun |
|
2016 |
127-128 |
C |
p. 104-110 7 p. |
artikel |
1159 |
Influence of milling on structural and microstructural properties of cerium oxide: Consequence of the surface activation on the dissolution kinetics in nitric acid
|
Hidalgo, Julia |
|
|
127-128 |
C |
p. |
artikel |
1160 |
Influence of Mn2+ on the performance of Pb-Ag anodes in fluoride/chloride-containing H2SO4 solutions
|
Zhong, Xiaocong |
|
2017 |
127-128 |
C |
p. 195-201 7 p. |
artikel |
1161 |
Influence of nickel on cathode process of zinc electrowinning
|
Liu, Zhidong |
|
2012 |
127-128 |
C |
p. 29-33 5 p. |
artikel |
1162 |
Influence of oxygen reduction and hydrogen evolution in the gold and silver direct electrodeposition process from thiourea solutions in a filter press type reactor
|
Poisot Díaz, M. Elena |
|
|
127-128 |
C |
p. 90-96 |
artikel |
1163 |
Influence of physicochemical properties of Brazilian serpentinites on the leaching process for indirect CO2 mineral carbonation
|
Arce, Gretta L.A.F. |
|
2017 |
127-128 |
C |
p. 142-151 |
artikel |
1164 |
Influence of polyoxometallates as additive on electro-winning of copper
|
Ehsani, Arman |
|
2016 |
127-128 |
C |
p. 79-85 7 p. |
artikel |
1165 |
Influence of potassium hydroxide pretreatment on the extraction of gold and silver from a refractory ore
|
Alp, İbrahim |
|
2014 |
127-128 |
C |
p. 64-71 8 p. |
artikel |
1166 |
Influence of redox pretreatment on the pulverization of panzhihua ilmenite during hydrochloric acid leaching
|
Zhang, Jianbo |
|
2015 |
127-128 |
C |
p. 226-233 8 p. |
artikel |
1167 |
Influence of seawater and discard brine on the dissolution of copper ore and copper concentrate
|
Velásquez-Yévenes, Lilian |
|
2018 |
127-128 |
C |
p. 88-95 |
artikel |
1168 |
Influence of sodium oleate on manganese electrodeposition in sulfate solution
|
Xue, Jianrong |
|
2016 |
127-128 |
C |
p. 115-122 8 p. |
artikel |
1169 |
Influence of SO3
2− ions and current density on silver electrowinning from spent photographic solution
|
Rudnik, Ewa |
|
2017 |
127-128 |
C |
p. 267-274 8 p. |
artikel |
1170 |
Influence of solution pH on the properties of biogenic jarosite produced from ferrous ion bio-oxidation in a bioreactor
|
Oladipo, Babatunde |
|
|
127-128 |
C |
p. |
artikel |
1171 |
Influence of UVA radiation on growth, biofilm formation and bioleaching capacity of Leptospirillum ferrooxidans
|
Amar, A. |
|
|
127-128 |
C |
p. |
artikel |
1172 |
Influences of Na2CO3 roasting and H3PO4 hot-pressure leaching on the purification of vein quartz to achieve high-purity quartz
|
Li, Yubiao |
|
|
127-128 |
C |
p. |
artikel |
1173 |
In-line extraction of REE from Dihydrate (DH) and HemiDihydrate (HDH) wet processes
|
Al-Thyabat, S. |
|
2015 |
127-128 |
C |
p. 30-37 8 p. |
artikel |
1174 |
Innovative methodology for comprehensive utilization of saprolite laterite ore: Recovery of metal-doped nickel ferrite and magnesium hydroxide
|
Gao, Jian-ming |
|
2015 |
127-128 |
C |
p. 27-34 8 p. |
artikel |
1175 |
Innovative technology for the production of high-purity sand silica by thermal treatment and acid leaching process
|
Khalifa, Marouan |
|
2019 |
127-128 |
C |
p. 204-209 |
artikel |
1176 |
Insight into solute and microbial transport in heap (bio)leaching systems using residence time distribution
|
Govender-Opitz, Elaine |
|
2017 |
127-128 |
C |
p. 1-6 |
artikel |
1177 |
Insights into heap bioleaching of low grade chalcopyrite ores — A pilot scale study
|
Panda, S. |
|
2012 |
127-128 |
C |
p. 157-165 9 p. |
artikel |
1178 |
Insights into the extraction of various vanadium species by primary amine
|
Wen, Jiawei |
|
2017 |
127-128 |
C |
p. 57-62 6 p. |
artikel |
1179 |
In situ AFM investigation of gibbsite growth in high ionic strength, highly alkaline, aqueous media
|
Fu, Weng |
|
2016 |
127-128 |
C |
p. 71-76 6 p. |
artikel |
1180 |
In situ leaching of copper: Challenges and future prospects
|
Sinclair, Laura |
|
2015 |
127-128 |
C |
p. 306-324 19 p. |
artikel |
1181 |
In-situ leaching of copper from spent heaps
|
Lizama, Hector M. |
|
|
127-128 |
C |
p. |
artikel |
1182 |
In situ recovery of copper sulfide ores: Alternative process schemes for bioleaching application
|
Vargas, Tomás |
|
|
127-128 |
C |
p. |
artikel |
1183 |
In situ recovery of gold: Column leaching experiments and reactive transport modeling
|
Martens, Evelien |
|
2012 |
127-128 |
C |
p. 16-23 8 p. |
artikel |
1184 |
In situ recovery of uranium — the microbial influence
|
Zammit, Carla M. |
|
2014 |
127-128 |
C |
p. 236-244 9 p. |
artikel |
1185 |
In-situ reduction of Au(S2O3)2
3− for efficient recovery of gold with magnetically separable shell-core structured MoS2@Fe3O4 composite
|
Sun, Kaige |
|
|
127-128 |
C |
p. |
artikel |
1186 |
In-situ reduction of gold thiosulfate complex on molybdenum disulfide nanosheets for a highly-efficient recovery of gold from thiosulfate solutions
|
Zeng, Shilin |
|
|
127-128 |
C |
p. |
artikel |
1187 |
In situ remediation of bauxite residue by sulfuric acid leaching and bipolar-membrane electrodialysis
|
Kishida, Mayuko |
|
2017 |
127-128 |
C |
p. 58-67 |
artikel |
1188 |
In situ X-ray diffraction investigation of the evolution of a nanocrystalline lithium-ion sieve from biogenic manganese oxide
|
Yu, Qianqian |
|
2014 |
127-128 |
C |
p. 253-258 6 p. |
artikel |
1189 |
Integrated diffusion dialysis precipitation – Cementation for selective recovery of leaching chemicals and metal values from electroplating sludge
|
Amrane, Chahrazad |
|
2018 |
127-128 |
C |
p. 34-40 |
artikel |
1190 |
Integration of cascaded aeration and neutralization for the treatment of acid mine drainage: Insights into the formation of jarosite
|
Hou, Qingjie |
|
|
127-128 |
C |
p. |
artikel |
1191 |
Integration of H2S gas cleaning and bioleaching for zinc recovery from electric arc furnace dust
|
Kinnunen, Päivi |
|
|
127-128 |
C |
p. |
artikel |
1192 |
Integration of resource recycling with de-alkalization for bauxite residue treatment
|
Zhang, Xuekai |
|
|
127-128 |
C |
p. |
artikel |
1193 |
Intensification of carbonate scandium leaching from red mud (bauxite residue)
|
Rychkov, Vladimir |
|
|
127-128 |
C |
p. |
artikel |
1194 |
Interactions of iron and titanium-bearing minerals under high-temperature Bayer digestion conditions
|
Wang, Yi-lin |
|
2019 |
127-128 |
C |
p. 192-198 |
artikel |
1195 |
Interactions of mimic weathered pyrite surfaces (FeS2) with acidic culture media (0 K): An approach for (bio)leaching applications
|
Saavedra, Albert |
|
2018 |
127-128 |
C |
p. 128-135 |
artikel |
1196 |
Interfacial alteration of pyrite caused by bioleaching
|
Yin, Lu |
|
|
127-128 |
C |
p. |
artikel |
1197 |
Inter-particle liquid spread pertaining to heap leaching using UV fluorescence based image analysis
|
Ilankoon, I.M.S.K. |
|
2019 |
127-128 |
C |
p. 175-185 |
artikel |
1198 |
Investigating critical parameters for bioremoval of heavy metals from computer printed circuit boards using the fungus Aspergillus niger
|
Arshadi, M. |
|
|
127-128 |
C |
p. |
artikel |
1199 |
Investigating the cross-interference effects of alumina refinery process gas species on a SAW based mercury vapor sensor
|
Kabir, K.M. Mohibul |
|
2017 |
127-128 |
C |
p. 51-57 |
artikel |
1200 |
Investigating the dissolution of iron sulfide and arsenide minerals in deep eutectic solvents
|
Hartley, Jennifer M. |
|
|
127-128 |
C |
p. |
artikel |
1201 |
Investigating the effect of Cu, Fe, Si and Ca in copper sulfide concentrate on the tank-bioleaching process: A case study
|
Shamsi, S. |
|
|
127-128 |
C |
p. |
artikel |
1202 |
Investigating the effect of ferrous ion on the digestion of diasporic bauxite in the Bayer process
|
Li, Xiaobin |
|
2015 |
127-128 |
C |
p. 183-189 7 p. |
artikel |
1203 |
Investigating the effects of process parameters on the filtration performance of ferric hydroxide in a continuous MSMPR reactor
|
Jenssen, Ina Beate |
|
|
127-128 |
C |
p. |
artikel |
1204 |
Investigating the impact of anatase on the dissolution of boehmite
|
Ireland, M. |
|
2014 |
127-128 |
C |
p. 246-254 9 p. |
artikel |
1205 |
Investigating the mechanism of Au(III) transport using a polymer inclusion membrane with dibutyl carbitol as a carrier
|
Ghiasi, Meisam |
|
|
127-128 |
C |
p. |
artikel |
1206 |
Investigation and modelling of the progression of zinc leaching from large sphalerite ore particles
|
Ghorbani, Yousef |
|
2013 |
127-128 |
C |
p. 8-23 16 p. |
artikel |
1207 |
Investigation into the effect of mechanical activation on the leaching of chalcopyrite in a glycine medium
|
Khezri, Maryam |
|
|
127-128 |
C |
p. |
artikel |
1208 |
Investigation of alumina preparation from aluminum chloride aqueous solution by electrical transformation
|
Han, Xiuxiu |
|
2019 |
127-128 |
C |
p. 30-37 |
artikel |
1209 |
Investigation of a novel alkali baking–leaching process for dissolution of Fe, Al, Ti, Sc, and Ga values and generation of alumina and titania from red mud
|
Agrawal, Shrey |
|
|
127-128 |
C |
p. |
artikel |
1210 |
Investigation of carboxylic acids and non-aqueous solvents for the selective leaching of zinc from blast furnace dust slurry
|
Steer, Julian M. |
|
2013 |
127-128 |
C |
p. 34-41 8 p. |
artikel |
1211 |
Investigation of complexation and solubility equilibria in the copper(I)/cyanide system at 25°C
|
Akilan, Chandrika |
|
2016 |
127-128 |
C |
p. 202-207 |
artikel |
1212 |
Investigation of Cu–S intermediate species during electrochemical dissolution and bioleaching of chalcopyrite concentrate
|
Zeng, Weimin |
|
2013 |
127-128 |
C |
p. 158-165 8 p. |
artikel |
1213 |
Investigation of decomposition of dolomite and distribution of iodine migration during the calcination-digestion process of phosphate ore
|
Zhou, Fei |
|
2019 |
127-128 |
C |
p. 174-181 |
artikel |
1214 |
Investigation of ferrous-iron biooxidation kinetics by Leptospirillum ferriphilum in a novel packed-column bioreactor: Effects of temperature and jarosite accumulation
|
Chowdhury, F. |
|
2014 |
127-128 |
C |
p. 36-42 7 p. |
artikel |
1215 |
Investigation of intermediate sulfur species during pyrite oxidation in the presence and absence of Acidithiobacillus ferrooxidans
|
Tu, Zhihong |
|
2017 |
127-128 |
C |
p. 58-65 8 p. |
artikel |
1216 |
Investigation of leaching kinetics of aluminum extraction from secondary aluminum dross with use of hydrochloric acid
|
Yang, Qun |
|
2019 |
127-128 |
C |
p. 158-167 |
artikel |
1217 |
Investigation of rare earth element extraction from coal byproducts using supercritical CO2
|
Veerla, Uthej |
|
|
127-128 |
C |
p. |
artikel |
1218 |
Investigation of the influence of acetate ions on cadmium extraction with D2EHPA
|
Bidari, Ehsan |
|
2014 |
127-128 |
C |
p. 129-132 4 p. |
artikel |
1219 |
Investigation of the kinetics and the morphology of cementation products formed during purification of a synthetic zinc sulfate electrolyte
|
Karlsson, Toni |
|
2018 |
127-128 |
C |
p. 169-179 |
artikel |
1220 |
Investigation of the use of foams for silver leaching using the thiosulfate‑copper(II)-ammonia system in the context of e-waste recycling
|
Bruez, Cyriaque |
|
|
127-128 |
C |
p. |
artikel |
1221 |
Investigation on chalcopyrite leaching with methanesulfonic acid (MSA) and hydrogen peroxide
|
Ahn, Junmo |
|
2019 |
127-128 |
C |
p. 54-62 |
artikel |
1222 |
Investigation on the radiation decontamination of lanthanum oxide during its production from ion-adsorption rare earth ores in China
|
Zhang, Kuifang |
|
2019 |
127-128 |
C |
p. |
artikel |
1223 |
Investigation on the recovery of rhenium in the high arsenite wash acid solution from the copper smelting process using reducing sulfide precipitation method
|
Hong, Tao |
|
|
127-128 |
C |
p. |
artikel |
1224 |
Investigations into the closed-loop hydrometallurgical process for heavy metals removal and recovery from biosolids via mild acid pre-treatment
|
Hakeem, Ibrahim Gbolahan |
|
|
127-128 |
C |
p. |
artikel |
1225 |
Investigations on the hydrolysis behavior of AlN in the leaching process of secondary aluminum dross
|
Li, Qi |
|
2018 |
127-128 |
C |
p. 121-127 |
artikel |
1226 |
Iodide-assisted leaching of chalcopyrite in acidic ferric sulfate media
|
Granata, G. |
|
2019 |
127-128 |
C |
p. 244-251 |
artikel |
1227 |
Iodine-assisted chalcopyrite leaching in ferric sulfate media: Kinetic study under fully controlled redox potential and pH
|
Winarko, Ronny |
|
|
127-128 |
C |
p. |
artikel |
1228 |
Ion exchange recovery of gold from iodine–iodide solutions
|
Zhang, Hongguang |
|
2012 |
127-128 |
C |
p. 69-75 7 p. |
artikel |
1229 |
Ion exchange recovery of rhenium from industrially relevant sulfate solutions: Single column separations and modeling
|
Virolainen, Sami |
|
2015 |
127-128 |
C |
p. 74-82 9 p. |
artikel |
1230 |
Ion exchange recovery of silver from concentrated base metal-chloride solutions
|
Virolainen, Sami |
|
2015 |
127-128 |
C |
p. 100-106 7 p. |
artikel |
1231 |
Ionic liquids as additives for acid leaching of copper from sulfidic ores
|
Carlesi, Carlos |
|
2016 |
127-128 |
C |
p. 29-33 5 p. |
artikel |
1232 |
Ion-pairing extraction and their reaction modeling of anionic M-Cl species with cationic NTAamide(C6) extractant and comparison with density functional theory calculations
|
Kinoshita, Ryoma |
|
|
127-128 |
C |
p. |
artikel |
1233 |
Iron oxidation and jarosite precipitation in a two-stage airlift bioreactor
|
Kaksonen, Anna H. |
|
2014 |
127-128 |
C |
p. 227-235 9 p. |
artikel |
1234 |
Iron removal from zinc liquors originating from hydrometallurgical processing of spent Zn/MnO2 batteries
|
Formanek, J. |
|
2013 |
127-128 |
C |
p. 100-105 6 p. |
artikel |
1235 |
Iron sulphate roasting for extraction of lithium from lepidolite
|
Luong, Van Tri |
|
2014 |
127-128 |
C |
p. 8-16 9 p. |
artikel |
1236 |
Isolation and characterization of Acidithiobacillus caldus TST3 and the effect of pre-cultivation on its dissolution of phosphorous from rock phosphates
|
Li, Lingling |
|
2018 |
127-128 |
C |
p. 86-93 |
artikel |
1237 |
Isolation and characterization of Acidithiobacillus ferrooxidans strain QXS-1 capable of unusual ferrous iron and sulfur utilization
|
Zhang, Yanfei |
|
2013 |
127-128 |
C |
p. 51-57 7 p. |
artikel |
1238 |
Isotopic ratios of 234U/238U in in-situ uranium leach liquors and their application to evaluate residual uranium in the orebody
|
Semenishchev, Vladimir S. |
|
|
127-128 |
C |
p. |
artikel |
1239 |
Is the growth of microorganisms limited by carbon availability during chalcopyrite bioleaching?
|
Marín, Sabrina |
|
2017 |
127-128 |
C |
p. 13-20 |
artikel |
1240 |
Jarosite dissolution kinetics in the presence of acidic thiourea and oxalate media
|
Calla-Choque, D. |
|
|
127-128 |
C |
p. |
artikel |
1241 |
Kinetic analysis of Cu and Zn dissolution from printed circuit board physical processing dust under oxidative ammonia leaching
|
Oluokun, Oluwayimika Olasunkanmi |
|
|
127-128 |
C |
p. |
artikel |
1242 |
Kinetic model based on initial rates of alkali hydrothermal dissolution of Verdete rock
|
Tomaz, Maria Rita C. |
|
|
127-128 |
C |
p. |
artikel |
1243 |
Kinetic model for direct leaching of zinc sulfide concentrates at high slurry and solute concentration
|
Lampinen, Matti |
|
2015 |
127-128 |
C |
p. 160-169 10 p. |
artikel |
1244 |
Kinetic modeling and experimental design of the sodium arsenojarosite decomposition in alkaline media: Implications
|
Patiño, Francisco |
|
2013 |
127-128 |
C |
p. 115-125 11 p. |
artikel |
1245 |
Kinetic modeling of bioleaching of copper sulfide concentrates in conventional and electrochemically controlled systems
|
Ahmadi, Ali |
|
2012 |
127-128 |
C |
p. 16-23 8 p. |
artikel |
1246 |
Kinetic modelling of cadmium removal from wet phosphoric acid by precipitation method
|
Zieliński, Jakub |
|
2019 |
127-128 |
C |
p. |
artikel |
1247 |
Kinetic modelling of chalcopyrite leaching assisted by iodine in ferric sulfate media
|
Winarko, Ronny |
|
|
127-128 |
C |
p. |
artikel |
1248 |
Kinetics and mechanism of arsenopyrite leaching in nitric acid solutions in the presence of pyrite and Fe(III) ions
|
Rogozhnikov, Denis |
|
|
127-128 |
C |
p. |
artikel |
1249 |
Kinetics and mechanism of hydrochloric acid leaching of rare earths from Bayan Obo slag and recovery of rare earth oxalate and high purity oxides
|
Zhou, Yan |
|
|
127-128 |
C |
p. |
artikel |
1250 |
Kinetics and mechanism of selective leaching of bismuth from molybdenite and bismuthinite mixed ore
|
Xu, Yingpeng |
|
|
127-128 |
C |
p. |
artikel |
1251 |
Kinetics and mechanism of the reduction-dissolution of cerium oxide catalyzed by fluoride ions in hydrochloric acid solution
|
Lemont, Florent |
|
2019 |
127-128 |
C |
p. 193-198 |
artikel |
1252 |
Kinetics and mineralogical analysis of copper dissolution from a bornite/chalcopyrite composite sample in ferric-chloride and methanesulfonic-acid solutions
|
Hidalgo, Tania |
|
2019 |
127-128 |
C |
p. 140-156 |
artikel |
1253 |
Kinetics of arsenic and sulfur release from amorphous arsenic trisulfide
|
Mirazimi, Mohamad |
|
|
127-128 |
C |
p. |
artikel |
1254 |
Kinetics of chalcocite leaching in oxygenated alkaline glycine solutions
|
Tanda, B.C. |
|
2018 |
127-128 |
C |
p. 264-273 |
artikel |
1255 |
Kinetics of column leaching of rare earth and aluminum from weathered crust elution-deposited rare earth ore with ammonium salt solutions
|
He, Zhengyan |
|
2016 |
127-128 |
C |
p. 33-39 7 p. |
artikel |
1256 |
Kinetics of copper dissolution in the purification of molybdenite concentrates by sulfidation and leaching
|
Padilla, Rafael |
|
2013 |
127-128 |
C |
p. 78-83 6 p. |
artikel |
1257 |
Kinetics of iron(III)-catalyzed oxidation of arsenic(III) in acidic solutions with SO2/O2 gas mixture using different iron sources
|
Guo, Fuqiang |
|
2019 |
127-128 |
C |
p. |
artikel |
1258 |
Kinetics of leaching fluoride from mixed rare earth concentrate with hydrochloric acid and aluminum chloride
|
Li, Mei |
|
2013 |
127-128 |
C |
p. 71-76 6 p. |
artikel |
1259 |
Kinetics of leaching of a Chinese laterite containing maghemite and magnetite in sulfuric acid solutions
|
Liu, Kui |
|
2012 |
127-128 |
C |
p. 125-136 12 p. |
artikel |
1260 |
Kinetics of leaching of stibnite by mixed Na2S and NaOH solutions
|
Raschman, Pavel |
|
2012 |
127-128 |
C |
p. 60-66 7 p. |
artikel |
1261 |
Kinetics of metallic silver leaching in the O2–thiosulfate system
|
Rivera, I. |
|
2015 |
127-128 |
C |
p. 63-70 8 p. |
artikel |
1262 |
Kinetics of nickel leaching from low-nickel matte in sulfuric acid solution under atmospheric pressure
|
Xiao, Wanhai |
|
|
127-128 |
C |
p. |
artikel |
1263 |
Kinetics of pressure oxidative leaching of molybdenite concentrate by nitric acid
|
Khoshnevisan, Amin |
|
2012 |
127-128 |
C |
p. 52-57 6 p. |
artikel |
1264 |
Kinetics of scheelite concentrate digestion with sulfuric acid in the presence of phosphoric acid
|
Li, Jiangtao |
|
2016 |
127-128 |
C |
p. 55-60 6 p. |
artikel |
1265 |
Kinetics of the ferric–ferrous couple on anodically passivated chalcopyrite (CuFeS2) electrodes
|
Ghahremaninezhad, A. |
|
2012 |
127-128 |
C |
p. 42-49 8 p. |
artikel |
1266 |
Kinetics of the oxidation of iron(II) by oxygen and hydrogen peroxide in concentrated chloride solutions – A re-evaluation and comparison with the oxidation of copper(I)
|
Akilan, Chandrika |
|
2016 |
127-128 |
C |
p. 123-129 7 p. |
artikel |
1267 |
Kinetics of the pressure leaching of enargite in FeSO4–H2SO4–O2 media
|
Padilla, R. |
|
2015 |
127-128 |
C |
p. 49-55 7 p. |
artikel |
1268 |
Kinetics of thorium extraction with di-(2-ethylhexyl) 2-ethylhexyl phosphonate from nitric acid medium
|
Wang, Yanliang |
|
2013 |
127-128 |
C |
p. 66-70 5 p. |
artikel |
1269 |
Kinetics of two-step bioleaching of Ni and Co from iron rich-laterite using supernatant metabolites produced by Salinivibrio kushneri as halophilic bacterium
|
Hosseini Nasab, Marzieh |
|
|
127-128 |
C |
p. |
artikel |
1270 |
Kinetics of ultrasound-assisted solvent extraction of vanadium with methyltrioctylammonium chloride (MAC)
|
Zhang, Fengzhen |
|
|
127-128 |
C |
p. |
artikel |
1271 |
Kinetics study comparing bacterial growth and iron oxidation kinetics over a range of temperatures 5–45 °C
|
Kupka, Daniel |
|
|
127-128 |
C |
p. |
artikel |
1272 |
Kinetics study of selenium removal from copper sulfate–sulfuric acid solution
|
Mokmeli, Mohammad |
|
2013 |
127-128 |
C |
p. 13-25 13 p. |
artikel |
1273 |
Kinetics study on the leaching of rare earth and aluminum from FCC catalyst waste slag using hydrochloric acid
|
Wang, Jinyu |
|
2017 |
127-128 |
C |
p. 312-319 8 p. |
artikel |
1274 |
Kinetic studies of gold(III) chloride complex reduction and solid phase precipitation in acidic aqueous system using dimethylamine borane as reducing agent
|
Wojnicki, Marek |
|
2012 |
127-128 |
C |
p. 43-53 11 p. |
artikel |
1275 |
Kinetic study of calcination of a rare earth ore
|
Carrillo García, Adrián |
|
|
127-128 |
C |
p. |
artikel |
1276 |
Kinetic study of copper leaching from chalcopyrite concentrate in alkaline glycine solution
|
Shin, Doyun |
|
2019 |
127-128 |
C |
p. 71-78 |
artikel |
1277 |
Kinetic study of gallium electrochemical reduction in alkaline solution
|
Gladyshev, S. |
|
2013 |
127-128 |
C |
p. 95-101 7 p. |
artikel |
1278 |
K-jarosite precipitation kinetics at low-moderate temperatures: Factors affecting mechanism, formation rates, solid morphology and crystallinity
|
Buriti, M.S. |
|
|
127-128 |
C |
p. |
artikel |
1279 |
Laboratory modelling of erosion damage by vortices in slurry flow
|
Graham, L.J.W. |
|
2017 |
127-128 |
C |
p. 43-50 |
artikel |
1280 |
Lab-scale circulation process of electrolytic manganese production with low-grade pyrolusite leaching by SO2
|
Sun, Wei-yi |
|
2013 |
127-128 |
C |
p. 118-125 8 p. |
artikel |
1281 |
Laccase-mediator system for enzymatic degradation of carbonaceous matter in the sequential pretreatment of double refractory gold ore from Syama mine, Mali
|
Sakai, Ryotaro |
|
|
127-128 |
C |
p. |
artikel |
1282 |
Lanthanide ion processing from monazite based on magnetic nanohydrometallurgy
|
Almeida, Sabrina da N. |
|
2019 |
127-128 |
C |
p. |
artikel |
1283 |
Lanthanum and neodymium from Egyptian monazite: Synergistic extractive separation using organophosphorus reagents
|
El-Nadi, Y.A. |
|
2012 |
127-128 |
C |
p. 23-29 7 p. |
artikel |
1284 |
Lanthanum enriched TiO2-ZrO2 hybrid material with tailored physicochemical properties dedicated to separation of lithium and cobalt(II) raising from the hydrometallurgical stage of the recycling process of lithium-ion batteries
|
Mazurek, Krzysztof |
|
|
127-128 |
C |
p. |
artikel |
1285 |
Lanxess Lewatit® AF 5 and activated carbon catalysis of enargite leaching in chloride media; a parameters study
|
Jahromi, Fazel G. |
|
2017 |
127-128 |
C |
p. 184-194 11 p. |
artikel |
1286 |
Leachability of rare-earth, calcium and minor metal ions from natural Fluorapatite in perchloric, hydrochloric, nitric and phosphoric acid solutions: Effect of proton activity and anion participation
|
Bandara, A.M.T.S. |
|
2015 |
127-128 |
C |
p. 179-189 11 p. |
artikel |
1287 |
Leaching and electrochemical dissolution of gold in the presence of iron oxide minerals associated with roasted gold ore
|
Bas, Ahmet Deniz |
|
2016 |
127-128 |
C |
p. 143-153 11 p. |
artikel |
1288 |
Leaching and electrochemistry of gold, silver and gold–silver alloys in cyanide solutions: Effect of oxidant and lead(II) ions
|
Dai, X. |
|
2013 |
127-128 |
C |
p. 139-148 10 p. |
artikel |
1289 |
Leaching and kinetic modeling of calcareous bornite in ammonia ammonium sulfate solution with sodium persulfate
|
Liu, Zhi Xiong |
|
2014 |
127-128 |
C |
p. 86-90 5 p. |
artikel |
1290 |
Leaching and recovery of phosphate and rare earth elements from an iron-rich fluorapatite concentrate: Part I: Direct baking of the concentrate
|
Soltani, Faraz |
|
2018 |
127-128 |
C |
p. 66-78 |
artikel |
1291 |
Leaching and recovery of phosphate and rare earth elements from an iron-rich fluorapatite concentrate: Part II: Selective leaching of calcium and phosphate and acid baking of the residue
|
Soltani, Faraz |
|
2019 |
127-128 |
C |
p. 29-38 |
artikel |
1292 |
Leaching behavior of impurities in Ca-alloyed metallurgical grade silicon
|
Lai, Huixian |
|
2015 |
127-128 |
C |
p. 173-181 9 p. |
artikel |
1293 |
Leaching behavior of metals from copper anode slime using an alkali fusion-leaching process
|
Li, Dong |
|
2015 |
127-128 |
C |
p. 9-12 4 p. |
artikel |
1294 |
Leaching behaviors of impurities in metallurgical-grade silicon with hafnium addition
|
Lei, Yun |
|
2017 |
127-128 |
C |
p. 433-439 |
artikel |
1295 |
Leaching behaviour and the solution consumption of uranium–vanadium ore in alkali carbonate–bicarbonate column leaching
|
Ghorbani, Yousef |
|
2016 |
127-128 |
C |
p. 127-137 11 p. |
artikel |
1296 |
Leaching behaviour of high surface area synthetic boehmite in NaOH solution
|
Alex, T.C. |
|
2013 |
127-128 |
C |
p. 23-32 10 p. |
artikel |
1297 |
Leaching behaviour of low and high Fe-substituted chlorite clay minerals at low pH
|
Tan, Hui |
|
2012 |
127-128 |
C |
p. 100-108 9 p. |
artikel |
1298 |
Leaching characteristics and mechanism of the synthetic calcium-aluminate slags for alumina recovery
|
Azof, Fabian Imanasa |
|
2019 |
127-128 |
C |
p. 273-290 |
artikel |
1299 |
Leaching gold by reactive flow of ammonium thiosulfate solution in high aspect ratio channels: Rate, passivation, and profile
|
Kotova, Svetlana |
|
2017 |
127-128 |
C |
p. 207-212 |
artikel |
1300 |
Leaching kinetics and mechanism of alunite from alunite tailings in highly concentrated KOH solution
|
Luo, Meng-Jie |
|
2017 |
127-128 |
C |
p. 10-20 11 p. |
artikel |
1301 |
Leaching kinetics and mechanism of slag produced from smelting-reduction of bauxite for alumina recovery
|
Azof, Fabian Imanasa |
|
|
127-128 |
C |
p. |
artikel |
1302 |
Leaching kinetics of Cu, Ni and Zn from waste silica rich integrated circuits using mild nitric acid
|
Ajiboye, E.A. |
|
2019 |
127-128 |
C |
p. 161-168 |
artikel |
1303 |
Leaching kinetics of enargite in alkaline sodium sulphide solutions
|
Parada, F. |
|
2014 |
127-128 |
C |
p. 48-58 11 p. |
artikel |
1304 |
Leaching kinetics of lanthanum in sulfuric acid from rare earth element (REE) slag
|
Kim, Chul-Joo |
|
2014 |
127-128 |
C |
p. 133-137 5 p. |
artikel |
1305 |
Leaching kinetics of mechanically activated boron concentrate in a NaOH solution
|
Xu, Yingzhe |
|
2018 |
127-128 |
C |
p. 60-72 |
artikel |
1306 |
Leaching kinetics of molybdenite with layered structure and hydrophobic properties in the H2SO4-H2O2-H2O system at atmospheric pressure
|
Chen, Zhiyuan |
|
|
127-128 |
C |
p. |
artikel |
1307 |
Leaching kinetics of rare earth elements and fluoride from mixed rare earth concentrate after roasting with calcium hydroxide and sodium hydroxide
|
Huang, Yukun |
|
2017 |
127-128 |
C |
p. 15-21 7 p. |
artikel |
1308 |
Leaching kinetics of scheelite in hydrochloric acid solution containing hydrogen peroxide as complexing agent
|
He, Guixiang |
|
2014 |
127-128 |
C |
p. 140-147 8 p. |
artikel |
1309 |
Leaching kinetics of scheelite with sodium phytate
|
Zhu, Xinrui |
|
2019 |
127-128 |
C |
p. 83-90 |
artikel |
1310 |
Leaching kinetics of szaibelyite ore in NaOH solution
|
Qin, Shiyue |
|
2015 |
127-128 |
C |
p. 333-339 7 p. |
artikel |
1311 |
Leaching magnesium oxide in boron mud by water with pressurized CO2
|
Bo, Jing |
|
2017 |
127-128 |
C |
p. 142-148 7 p. |
artikel |
1312 |
Leaching mechanism for chalcopyrite in hydrochloric acid
|
Cai, Yuanfeng |
|
2012 |
127-128 |
C |
p. 109-118 10 p. |
artikel |
1313 |
Leaching method selection for Caldag lateritic nickel ore by the analytic hierarchy process (AHP)
|
Kursunoglu, Sait |
|
2017 |
127-128 |
C |
p. 179-184 6 p. |
artikel |
1314 |
Leaching of base metals from spent Ni–metal hydride batteries with emphasis on kinetics and characterization
|
Meshram, Pratima |
|
2015 |
127-128 |
C |
p. 172-179 8 p. |
artikel |
1315 |
Leaching of brannerite in the ferric chloride system
|
Gilligan, Rorie |
|
2018 |
127-128 |
C |
p. 104-112 |
artikel |
1316 |
Leaching of brannerite in the ferric sulphate system — Part 1: Kinetics and reaction mechanisms
|
Gilligan, Rorie |
|
2015 |
127-128 |
C |
p. 71-80 10 p. |
artikel |
1317 |
Leaching of brannerite in the ferric sulphate system. Part 2: Mineralogical transformations during leaching
|
Gilligan, Rorie |
|
2016 |
127-128 |
C |
p. 95-106 12 p. |
artikel |
1318 |
Leaching of brannerite in the ferric sulphate system. Part 3: The influence of reactive gangue minerals
|
Gilligan, Rorie |
|
2016 |
127-128 |
C |
p. 343-354 |
artikel |
1319 |
Leaching of catalyst platinum from cured silicone elastomers: A preliminary study for comparing reagents
|
Feix, Tobias |
|
|
127-128 |
C |
p. |
artikel |
1320 |
Leaching of cathode materials from spent lithium-ion batteries by using a mixture of ascorbic acid and HNO3
|
Chen, Hao |
|
|
127-128 |
C |
p. |
artikel |
1321 |
Leaching of chalcopyrite ore agglomerated with high chloride concentration and high curing periods
|
Velásquez-Yévenes, L. |
|
2018 |
127-128 |
C |
p. 215-220 |
artikel |
1322 |
Leaching of chalcopyrite with hydrogen peroxide in 1-hexyl-3-methyl-imidazolium hydrogen sulfate ionic liquid aqueous solution
|
Hu, Junxian |
|
2017 |
127-128 |
C |
p. 1-8 |
artikel |
1323 |
Leaching of copper and zinc from copper converter slag flotation tailings using H2SO4 and biologically generated Fe2(SO4)3
|
Muravyov, Maxim I. |
|
2012 |
127-128 |
C |
p. 40-46 7 p. |
artikel |
1324 |
Leaching of copper from waste printed circuit boards using Phanerochaete chrysosporium fungi
|
Liu, Qian |
|
|
127-128 |
C |
p. |
artikel |
1325 |
Leaching of hemimorphite in NH3–(NH4)2SO4–H2O system and its mechanism
|
Liu, Zhiyong |
|
2012 |
127-128 |
C |
p. 137-143 7 p. |
artikel |
1326 |
Leaching of ilmenite ores by acidic chloride solutions
|
Das, G.K. |
|
2013 |
127-128 |
C |
p. 94-99 6 p. |
artikel |
1327 |
Leaching of iron oxides from kaolin: Synergistic effect of citrate-thiosulfate and kinetic analysis
|
Olvera-Venegas, P.N. |
|
2017 |
127-128 |
C |
p. 16-26 11 p. |
artikel |
1328 |
Leaching of lead from solder material of waste printed circuit boards (PCBs)
|
Jha, Manis Kumar |
|
2012 |
127-128 |
C |
p. 28-34 7 p. |
artikel |
1329 |
Leaching of lepidolite and recovery of lithium hydroxide from purified alkaline pressure leach liquor by phosphate precipitation and lime addition
|
Mulwanda, James |
|
|
127-128 |
C |
p. |
artikel |
1330 |
Leaching of low grade zinc oxide ores in NH4Cl–NH3 solutions with nitrilotriacetic acid as complexing agents
|
Rao, Shuai |
|
2015 |
127-128 |
C |
p. 101-106 6 p. |
artikel |
1331 |
Leaching of low grade zinc oxide ores in nitrilotriacetic acid solutions
|
Yang, Tianzu |
|
2016 |
127-128 |
C |
p. 107-111 5 p. |
artikel |
1332 |
Leaching of metals from electronic waste using carboxylic acid-based deep eutectic solvents: Preliminary laboratory studies and molecular modelling
|
Emmons-Burzyńska, Magdalena |
|
|
127-128 |
C |
p. |
artikel |
1333 |
Leaching of metals with microemulsions containing bis-(2-ethyhexyl)phosphoric acid or tributylphosphate
|
Murashova, Nataliya M. |
|
2018 |
127-128 |
C |
p. 278-284 |
artikel |
1334 |
Leaching of Ni–Cu–Fe–S converter matte at varying iron endpoints; mineralogical changes and behaviour of Ir, Rh and Ru
|
van Schalkwyk, R.F. |
|
2013 |
127-128 |
C |
p. 36-45 10 p. |
artikel |
1335 |
Leaching of rare earth elements from ‘Rödberg’ ore of Fen carbonatite complex deposit, using the ionic liquid HbetTf2N
|
Davris, Panagiotis |
|
2018 |
127-128 |
C |
p. 20-27 |
artikel |
1336 |
Leaching of rare earth elements from waste lamp phosphor mixtures by reduced alkali fusion followed by acid leaching
|
Liang, Yong |
|
2016 |
127-128 |
C |
p. 99-103 5 p. |
artikel |
1337 |
Leaching of Rare Earth Elements (REEs) from lake sediments around Eppawala phosphate deposit, Sri Lanka: A secondary source for REEs
|
Dushyantha, N.P. |
|
|
127-128 |
C |
p. |
artikel |
1338 |
Leaching of silver contained in mining tailings, using sodium thiosulfate: A kinetic study
|
Salinas-Rodríguez, Eleazar |
|
2016 |
127-128 |
C |
p. 6-11 6 p. |
artikel |
1339 |
Leaching of silver from silver-bearing residue by a choline chloride aqueous solution and the sustained deposition of silver on copper
|
Fan, Yangyang |
|
|
127-128 |
C |
p. |
artikel |
1340 |
Leaching of spent pot-lining with aluminium nitrate and nitric acid: Effect of reaction conditions and thermodynamic modelling of solution speciation
|
Lisbona, Diego F. |
|
2013 |
127-128 |
C |
p. 132-143 12 p. |
artikel |
1341 |
Leaching of spent selective catalytic reduction catalyst using alkaline melting for recovery of titanium, tungsten, and vanadium
|
Moon, Gyeonghye |
|
2019 |
127-128 |
C |
p. |
artikel |
1342 |
Leaching of synthetic Ca3WO6 with ammoniacal ammonium carbonate solution under atmospheric pressure: A fundamental study
|
Xu, Xiangming |
|
2019 |
127-128 |
C |
p. 55-66 |
artikel |
1343 |
Leaching of vanadium and tungsten from spent V2O5-WO3/TiO2 catalyst by ionic liquids
|
Liu, Qing |
|
|
127-128 |
C |
p. |
artikel |
1344 |
Leaching of vanadium by sulfur dioxide from spent catalysts for sulfuric acid production
|
Nikiforova, A. |
|
2016 |
127-128 |
C |
p. 31-37 |
artikel |
1345 |
Leaching of yttrium, europium and accompanying elements from phosphor coatings
|
Miskufova, Andrea |
|
2018 |
127-128 |
C |
p. 216-228 |
artikel |
1346 |
Leaching of zinc from calcined smithsonite using sodium hydroxide
|
Zhang, Yucheng |
|
2013 |
127-128 |
C |
p. 89-92 4 p. |
artikel |
1347 |
Leaching studies of alkali roasted bomarilmenite and anatase during the processing of synthetic rutile
|
Ephraim, Jeya Kumari |
|
2015 |
127-128 |
C |
p. 113-119 7 p. |
artikel |
1348 |
Lead electrowinning from methane sulfonic acid
|
Lu, Jianming |
|
|
127-128 |
C |
p. |
artikel |
1349 |
Lead leaching mechanism and kinetics in electrolytic manganese anode slime
|
Wang, Benjun |
|
2019 |
127-128 |
C |
p. 98-105 |
artikel |
1350 |
Lead removal from tin chloride solution by barium sulfate and coprecipitation of (BaxPby)(SO4)2 for the processing of PbSn smelter slag
|
Yu, Lining |
|
|
127-128 |
C |
p. |
artikel |
1351 |
Leveraging strategies to increase gold cyanidation in the presence of sulfide minerals — Packed-bed electrochemical reactor approach
|
Azizi, Abdelaaziz |
|
2012 |
127-128 |
C |
p. 73-81 9 p. |
artikel |
1352 |
Li extraction from high Mg/Li ratio brine with LiFePO4/FePO4 as electrode materials
|
Zhao, Zhongwei |
|
2013 |
127-128 |
C |
p. 75-83 9 p. |
artikel |
1353 |
Lignite ash: Waste material or potential resource - Investigation of metal recovery and utilization options
|
Kermer, René |
|
2017 |
127-128 |
C |
p. 141-152 |
artikel |
1354 |
Linking performance and microbial ecology in a biological sulphate reducing reactor system with biomass retention developed for the treatment of acid rock drainage
|
Hessler, Tomas |
|
|
127-128 |
C |
p. |
artikel |
1355 |
Lipophilic EDTA-based ligands in different diluents for the extraction of rare earths: Preliminary results with Nd(III), Dy(III) and Pr(III) in chloride and nitrate media
|
Sukhbaatar, Tamir |
|
|
127-128 |
C |
p. |
artikel |
1356 |
Liquid flow in heap leaching using the discrete liquid flow model and graph-based void search algorithm
|
Chaitanya, G.V.A. |
|
|
127-128 |
C |
p. |
artikel |
1357 |
Liquid–liquid extraction in microchannels with Zinc–D2EHPA system
|
Darekar, Mayur |
|
2014 |
127-128 |
C |
p. 54-62 9 p. |
artikel |
1358 |
Liquid–liquid extraction of cadmium(II) from sulfate medium using phosphonium and ammonium based ionic liquids diluted in kerosene
|
Swain, Sushree Sonali |
|
2016 |
127-128 |
C |
p. 63-70 8 p. |
artikel |
1359 |
Liquid-liquid extraction of lithium using lipophilic dibenzo-14-crown-4 ether carboxylic acid in hydrophobic room temperature ionic liquid
|
Torrejos, Rey Eliseo C. |
|
2016 |
127-128 |
C |
p. 362-371 |
artikel |
1360 |
Liquid-liquid extraction of lithium using novel phosphonium ionic liquid as an extractant
|
Shi, Chenglong |
|
2017 |
127-128 |
C |
p. 314-320 |
artikel |
1361 |
Liquid-liquid extraction of molybdenum(VI) using aqueous two-phase systems (ATPS) consisting of polyethylene glycol (PEG) and sodium, ammonium and copper(II) salts: Comparison with conventional solvent extraction
|
Martínez, Monserrat |
|
|
127-128 |
C |
p. |
artikel |
1362 |
Liquid–liquid extraction of rhenium(VII) from an acidic chloride solution using Cyanex 923
|
Srivastava, Rajiv Ranjan |
|
2015 |
127-128 |
C |
p. 33-38 6 p. |
artikel |
1363 |
Lithium and cobalt recovery for lithium-ion battery recycle using an improved oxalate process with hydrogen peroxide
|
Verma, Ankit |
|
|
127-128 |
C |
p. |
artikel |
1364 |
Lithium carbonate precipitation by homogeneous and heterogeneous reactive crystallization
|
Han, Bing |
|
|
127-128 |
C |
p. |
artikel |
1365 |
Lithium extraction from clay-type lithium resource using ferric sulfate solutions via an ion-exchange leaching process
|
Zhu, Li |
|
|
127-128 |
C |
p. |
artikel |
1366 |
Lithium extraction from geothermal brines in the Upper Rhine Graben: A case study of potential and current state of the art
|
Kölbel, Lena |
|
|
127-128 |
C |
p. |
artikel |
1367 |
Lithium extraction from β-spodumene: A comparison of keatite and analcime processes
|
Alhadad, Mahmoud F. |
|
|
127-128 |
C |
p. |
artikel |
1368 |
Lithium Extraction with a Synergistic System of Dioctyl Phthalate and Tributyl Phosphate in Kerosene and FeCl3
|
Ji, Lianmin |
|
2016 |
127-128 |
C |
p. 71-78 8 p. |
artikel |
1369 |
Lithium fluoride dissolution in sulfuric acid solution: Optimization and application in the extraction of lithium from fluorinated α-spodumene
|
Resentera, Alexander C. |
|
|
127-128 |
C |
p. |
artikel |
1370 |
Lithium ion adsorption characteristics of porous Li1.33Mn1.67O4 adsorbent prepared using petroleum-based pitch as a binder
|
Ryu, Jae Chun |
|
|
127-128 |
C |
p. |
artikel |
1371 |
Lithium recovery from aqueous solution by sorption/desorption
|
Lemaire, Julien |
|
2014 |
127-128 |
C |
p. 1-11 11 p. |
artikel |
1372 |
Lithium recovery from geothermal brines: An investigation into radioactive nuclide uptake on lithium‑manganese-oxide (LMO) granules
|
Kölbel, Lena |
|
|
127-128 |
C |
p. |
artikel |
1373 |
Lithium recovery from salt lake brine by counter-current extraction using tributyl phosphate/FeCl3 in methyl isobutyl ketone
|
Xiang, Wei |
|
2017 |
127-128 |
C |
p. 27-32 6 p. |
artikel |
1374 |
Lithium recovery system using electrostatic field assistance
|
Ryu, Taegong |
|
2015 |
127-128 |
C |
p. 78-83 6 p. |
artikel |
1375 |
Low-acid leaching of lithium-ion battery active materials in Fe-catalyzed Cu-H2SO4 system
|
Porvali, Antti |
|
|
127-128 |
C |
p. |
artikel |
1376 |
Low-cost alternative for iron recovery in lateritic nickel production by using ferronickel refining slag and kiln dust for iron precipitation from acid leachate
|
Caetano, Gabriela Costa |
|
|
127-128 |
C |
p. |
artikel |
1377 |
Low-grade chalcopyrite ore, heap leaching or smelting recovery route?
|
Mokmeli, Mohammad |
|
|
127-128 |
C |
p. |
artikel |
1378 |
Magnetic nanohydrometallurgy: A promising nanotechnological approach for metal production and recovery using functionalized superparamagnetic nanoparticles
|
Condomitti, Ulisses |
|
2012 |
127-128 |
C |
p. 148-151 4 p. |
artikel |
1379 |
Magnetic resonance imaging characterisation of the influence of flowrate on liquid distribution in drip irrigated heap leaching
|
Fagan-Endres, Marijke A. |
|
2015 |
127-128 |
C |
p. 157-164 8 p. |
artikel |
1380 |
Magnetic separation of iron precipitate from nickel sulfate solution by magnetic seeding
|
Han, Haisheng |
|
2015 |
127-128 |
C |
p. 182-187 6 p. |
artikel |
1381 |
Magnetic separation-sulphuric acid leaching of Cu–Co–Fe matte obtained from copper converter slag for recovering Cu and Co
|
Yin, Fei |
|
2014 |
127-128 |
C |
p. 189-194 6 p. |
artikel |
1382 |
Manganese consumption during zinc electrowinning using a dynamic process simulation
|
Mahon, M. |
|
2014 |
127-128 |
C |
p. 184-191 8 p. |
artikel |
1383 |
Manganese electrodeposition — A literature review
|
Lu, Jianming |
|
2014 |
127-128 |
C |
p. 105-116 12 p. |
artikel |
1384 |
Manganese extraction by sulfur-based reduction roasting–acid leaching from low-grade manganese oxide ores
|
Zhang, Yuanbo |
|
2013 |
127-128 |
C |
p. 126-132 7 p. |
artikel |
1385 |
Manganese precipitation kinetics and cobalt adsorption on MnO2 from the ammoniacal ammonium sulfate leach liquor of Indian Ocean manganese nodule
|
Nathsarma, K.C. |
|
2013 |
127-128 |
C |
p. 133-138 6 p. |
artikel |
1386 |
Manufacturing reactive magnesia from nickel laterite waste solution via nesquehonite precipitation
|
Souza, Cássia Ribeiro |
|
|
127-128 |
C |
p. |
artikel |
1387 |
Material size distribution in concurrent bio-leaching and precipitation: Experimental procedure and modelling
|
Botane, Pierre |
|
2013 |
127-128 |
C |
p. 7-14 8 p. |
artikel |
1388 |
Mathematical modeling of the dissolution of phosphate rock into various acidic medium
|
Mgaidi, Arbi |
|
2018 |
127-128 |
C |
p. 27-31 |
artikel |
1389 |
Mathematical modelling of neodymium, terbium and dysprosium solvent extraction from chloride media using methyl-tri(octyl/decyl)ammonium oleate ionic liquid as extractant
|
Obón, E. |
|
2017 |
127-128 |
C |
p. 84-90 7 p. |
artikel |
1390 |
Maximization of the silver recovery with the “monoethanolamine-copper-ammonium sulfate” novel system. A step towards the development of a less toxic leaching technology
|
Reyes-Sandoval, E. |
|
2017 |
127-128 |
C |
p. 22-31 10 p. |
artikel |
1391 |
Measurements of dissolved oxygen in bioleaching reactors by optode application
|
Giebner, Fabian |
|
2017 |
127-128 |
C |
p. 64-68 |
artikel |
1392 |
Mechanical activation modes of chalcopyrite concentrate and relationship between microstructure and leaching efficiency
|
Yang, Hongying |
|
|
127-128 |
C |
p. |
artikel |
1393 |
Mechanism and kinetics of gibbsite-seeded sodium aluminosilicate crystallisation from synthetic spent Bayer liquor
|
Ruan, Shuai |
|
2016 |
127-128 |
C |
p. 1-8 8 p. |
artikel |
1394 |
Mechanism and kinetics of gold leaching by cupric chloride
|
Lampinen, Matti |
|
2017 |
127-128 |
C |
p. 103-111 |
artikel |
1395 |
Mechanism of arsenic removal from tannin‐‑germanium complex augmented by ultrasound
|
Di, Haokai |
|
|
127-128 |
C |
p. |
artikel |
1396 |
Mechanism of nodular growth in copper electrorefining with the inclusion of impurity particles under natural convection
|
Miyamoto, Masayuki |
|
|
127-128 |
C |
p. |
artikel |
1397 |
Mechanism of poisoning hydroxyoximes by cobalt in different organic systems
|
Sun, Qi |
|
2018 |
127-128 |
C |
p. 64-73 |
artikel |
1398 |
Mechanism of the denitrification of secondary aluminum dross (SAD) during water leaching with delayed addition of a low dosage of sodium hydroxide
|
Wang, Chuan |
|
|
127-128 |
C |
p. |
artikel |
1399 |
Mechanism of vanadium extraction from stone coal via hydrating and hardening of anhydrous calcium sulfate
|
Xue, Nan-nan |
|
2016 |
127-128 |
C |
p. 48-56 9 p. |
artikel |
1400 |
Mechanisms of NaCl-tolerance in acidophilic iron-oxidizing bacteria and archaea: Comparative genomic predictions and insights
|
Rivera-Araya, Javier |
|
|
127-128 |
C |
p. |
artikel |
1401 |
Mechanochemical decomposition of mixed rare earth concentrate in the NaOH-CaO-H2O system
|
Liu, Jiang |
|
2019 |
127-128 |
C |
p. |
artikel |
1402 |
Mechanochemical leaching of Zn from low-grade smithsonite using Fe2(SO4)3 solution
|
Wang, Kui |
|
|
127-128 |
C |
p. |
artikel |
1403 |
Mechanochemical pre-treatment of lateritic nickel ore with sulfur followed by atmospheric leaching
|
Basturkcu, Huseyin |
|
2018 |
127-128 |
C |
p. 43-52 |
artikel |
1404 |
Mesophilic inoculation enhances primary and secondary copper sulfide bioleaching altering the microbial & mineralogical ore dynamics
|
Bobadilla-Fazzini, Roberto A. |
|
2017 |
127-128 |
C |
p. 7-12 |
artikel |
1405 |
Metal biorecovery in acid solutions from a copper smelter slag
|
Kaksonen, Anna H. |
|
2017 |
127-128 |
C |
p. 135-140 |
artikel |
1406 |
Metal leaching from cathode ray tube waste using combination of Serratia plymuthica and EDTA
|
Pant, Deepak |
|
2014 |
127-128 |
C |
p. 89-95 7 p. |
artikel |
1407 |
Metallurgical processes for the recovery and recycling of lanthanum from various resources—A review
|
Sinha, Shivendra |
|
2016 |
127-128 |
C |
p. 47-59 13 p. |
artikel |
1408 |
Metallurgical process for valuable elements recovery from red mud—A review
|
Liu, Zhaobo |
|
2015 |
127-128 |
C |
p. 29-43 15 p. |
artikel |
1409 |
Metal recovery from printed circuit boards by magnetotactic bacteria
|
Sannigrahi, Sumana |
|
2019 |
127-128 |
C |
p. 113-124 |
artikel |
1410 |
Metal recovery from the copper sulfide tailing with leaching and fractional precipitation technology
|
Chen, Tao |
|
2014 |
127-128 |
C |
p. 178-182 5 p. |
artikel |
1411 |
Metal sulfide precipitation mediated by an elemental sulfur-reducing thermoacidophilic microbial culture from a full-scale anaerobic reactor
|
Hidalgo-Ulloa, Adrian |
|
|
127-128 |
C |
p. |
artikel |
1412 |
Microbial assisted galvanic leaching of chalcopyrite concentrate in continuously stirred bioreactors
|
Esmailbagi, Mohammad Reza |
|
2018 |
127-128 |
C |
p. 139-143 |
artikel |
1413 |
Microbial behaviour under conditions relevant to heap leaching: Studies using the sulfur-oxidising, moderate thermophile Acidithiobacillus caldus
|
Watling, H.R. |
|
2012 |
127-128 |
C |
p. 104-111 8 p. |
artikel |
1414 |
Microbial community changes during the process of pyrite bioleaching
|
He, Zhiguo |
|
2012 |
127-128 |
C |
p. 81-89 9 p. |
artikel |
1415 |
Microbial community dynamics during a demonstration-scale bioheap leaching operation
|
Halinen, Anna-Kaisa |
|
2012 |
127-128 |
C |
p. 34-41 8 p. |
artikel |
1416 |
Microbial community shifts during the process of marmatite bioleaching
|
Li, Shuzhen |
|
2014 |
127-128 |
C |
p. 127-131 5 p. |
artikel |
1417 |
Microbial formation of crystalline scorodite for treatment of As(III)-bearing copper refinery process solution using Acidianus brierleyi
|
Okibe, Naoko |
|
2014 |
127-128 |
C |
p. 34-41 8 p. |
artikel |
1418 |
Microbial generation of sulfuric acid from granular elemental sulfur in laboratory-scale bioreactors
|
Pakostova, Eva |
|
2019 |
127-128 |
C |
p. |
artikel |
1419 |
Microbial recovery of gold from neutral and acidic solutions by the baker's yeast Saccharomyces cerevisiae
|
Saitoh, Norizoh |
|
2018 |
127-128 |
C |
p. 29-34 |
artikel |
1420 |
Microbial recovery of palladium by baker's yeast through bioreductive deposition and biosorption
|
Saitoh, Norizoh |
|
|
127-128 |
C |
p. |
artikel |
1421 |
Microbial recovery of rhodium from dilute solutions by the metal ion–reducing bacterium Shewanella algae
|
Tamaoki, Koshiro |
|
2013 |
127-128 |
C |
p. 26-29 4 p. |
artikel |
1422 |
Microbiological passive treatment of Mn/Zn-containing mine water
|
Okibe, Naoko |
|
|
127-128 |
C |
p. |
artikel |
1423 |
Micro-copper powders recovered from waste printed circuit boards by electrolysis
|
Chu, Yingying |
|
2015 |
127-128 |
C |
p. 152-157 6 p. |
artikel |
1424 |
Microfluidic solvent extraction of Ce (III) and Pr (III) from a chloride solution using EHEHPA (P507) in a serpentine microreactor
|
Yin, Shaohua |
|
2018 |
127-128 |
C |
p. 266-272 |
artikel |
1425 |
Microfluidic study of sustainable gold leaching using glycine solution
|
Azadi, M.R. |
|
2019 |
127-128 |
C |
p. 186-193 |
artikel |
1426 |
Microstructural evolution of UO2 pellets containing metallic particles of Ru, Rh and Pd during dissolution in nitric acid solution: 3D-ESEM monitoring
|
Cordara, T. |
|
2019 |
127-128 |
C |
p. 182-193 |
artikel |
1427 |
Microstructure analysis of low-grade copper ore agglomerates prepared by geopolymerization
|
Chen, Keqiang |
|
|
127-128 |
C |
p. |
artikel |
1428 |
Microstructure evolution of chalcopyrite agglomerates during leaching – A synchrotron-based X-ray CT approach combined with a data-constrained modelling (DCM)
|
Gao, Xiyu |
|
|
127-128 |
C |
p. |
artikel |
1429 |
Microstructure evolution of low-grade chalcopyrite ores in chloride leaching - A synchrotron-based X-ray CT approach combined with a data-constrained modelling (DCM)
|
Yang, Yi |
|
2019 |
127-128 |
C |
p. 1-13 |
artikel |
1430 |
Microwave acid baking of red mud for extraction of titanium and scandium values
|
Agrawal, Shrey |
|
|
127-128 |
C |
p. |
artikel |
1431 |
Microwave-assisted selective leaching of nickel from spent hydrodesulphurization catalyst: A comparative study between sulphuric and organic acids
|
Pinto, Isabel S.S. |
|
2013 |
127-128 |
C |
p. 20-27 8 p. |
artikel |
1432 |
Microwave digestion of gibbsite and bauxite in sodium hydroxide
|
Dillinger, Ben |
|
|
127-128 |
C |
p. |
artikel |
1433 |
Microwave-enhanced leaching of magnesium and iron from iron-bearing serpentine tailings
|
Kou, Wenjia |
|
|
127-128 |
C |
p. |
artikel |
1434 |
Microwave-induced modifications in electric arc furnace slag: An attempt to enhance aqueous dissolution
|
Kurtulus, Recep |
|
|
127-128 |
C |
p. |
artikel |
1435 |
Microwave mediated precipitation and aging of iron oxyhydroxides at low temperature for possible hydrometallurgical applications
|
Lu, Meng-nan |
|
2013 |
127-128 |
C |
p. 110-116 7 p. |
artikel |
1436 |
Microwave roasting and leaching of an oxide-sulphide zinc ore
|
Yang, Kun |
|
2016 |
127-128 |
C |
p. 243-251 9 p. |
artikel |
1437 |
Migration distribution and recovery of rare earth elements in the nitrophosphate process of fertilizer production
|
Yang, Lin |
|
|
127-128 |
C |
p. |
artikel |
1438 |
Migration of natural radionuclides in the extraction process of the ion-adsorption type rare earths ore
|
Kaizhong, Li |
|
2017 |
127-128 |
C |
p. 236-244 9 p. |
artikel |
1439 |
Mineralogical and metallurgical study of supergene ores of the Mike CuAu(Zn) deposit, Carlin trend, Nevada
|
Barton, Isabel |
|
2018 |
127-128 |
C |
p. 176-191 |
artikel |
1440 |
Mineralogical characterisation of Indonesian laterites prior to and post atmospheric leaching
|
Fan, Rong |
|
2013 |
127-128 |
C |
p. 102-109 8 p. |
artikel |
1441 |
Mn–Se interactions at the cathode interface during the electrolytic-manganese process
|
Fan, Xing |
|
2012 |
127-128 |
C |
p. 24-29 6 p. |
artikel |
1442 |
Modeling and optimization of surface quality of copper deposits recovered from brass scrap by direct electrowinning
|
Aghazadeh, M. |
|
2012 |
127-128 |
C |
p. 103-108 6 p. |
artikel |
1443 |
Modeling and simulation of multicomponent solvent extraction processes to purify rare earth metals
|
Yun, Chan Yeong |
|
2016 |
127-128 |
C |
p. 40-45 6 p. |
artikel |
1444 |
Modeling of liquid–liquid extraction of vanadium with primary amine N1923 in H2SO4 medium
|
Wen, Jiawei |
|
2018 |
127-128 |
C |
p. 57-65 |
artikel |
1445 |
Modeling of selenium and tellurium removal from copper electrowinning solution
|
Mokmeli, Mohammad |
|
2015 |
127-128 |
C |
p. 12-20 9 p. |
artikel |
1446 |
Modeling of the extraction of uranium (VI) from concentrated phosphoric acid by synergistic mixtures of bis-(2-ethylhexyl)-phosphoric acid and tri-n-octylphosphine oxide
|
Beltrami, Denis |
|
|
127-128 |
C |
p. 118-125 |
artikel |
1447 |
Modeling the Key Lake uranium mill's bulk neutralization process using a pilot-scale model
|
Robertson, Jared |
|
2014 |
127-128 |
C |
p. 210-219 10 p. |
artikel |
1448 |
Modelling microbial transport in simulated low-grade heap bioleaching systems: The biomass transport model
|
Govender, E. |
|
2014 |
127-128 |
C |
p. 299-307 9 p. |
artikel |
1449 |
Modelling of column lithium desorption from Li+-loaded adsorbent obtained by adsorption from salt brine
|
Ooi, Kenta |
|
2017 |
127-128 |
C |
p. 31-40 |
artikel |
1450 |
Modelling of ionic conductivity in nitrate brines to estimate solute concentrations
|
Fuentes, Aldo |
|
|
127-128 |
C |
p. |
artikel |
1451 |
Modelling of multicomponent reactive transport in finite columns — Application to gold recovery using iodide ligands
|
Karrech, A. |
|
2018 |
127-128 |
C |
p. 43-53 |
artikel |
1452 |
Modelling of silver anode dissolution and the effect of gold as impurity under simulated industrial silver electrorefining conditions
|
Aji, Arif T. |
|
2019 |
127-128 |
C |
p. |
artikel |
1453 |
Modelling particle scale leach kinetics based on X-ray computed micro-tomography images
|
Lin, Q. |
|
2016 |
127-128 |
C |
p. 25-36 12 p. |
artikel |
1454 |
Modelling the effect of temperature and free acid, silver, copper and lead concentrations on silver electrorefining electrolyte conductivity
|
Aji, Arif T. |
|
2016 |
127-128 |
C |
p. 154-159 6 p. |
artikel |
1455 |
Modelling the kinetics of chalcocite leaching in acidified cupric chloride media under fully controlled pH and potential
|
Hashemzadeh, Mohsen |
|
2019 |
127-128 |
C |
p. |
artikel |
1456 |
Modelling the kinetics of chalcocite leaching in acidified ferric chloride media under fully controlled pH and potential
|
Hashemzadeh, Mohsen |
|
2019 |
127-128 |
C |
p. 275-283 |
artikel |
1457 |
Modelling the leaching behaviour and particle-size distribution dynamics of poly-disperse particulate solids in a batch reactor
|
Raschman, Pavel |
|
|
127-128 |
C |
p. |
artikel |
1458 |
Modelling the scale-up of the iodine-assisted chalcopyrite leaching in ferric sulfate media from reactors to columns and simulating heap operations
|
Winarko, Ronny |
|
|
127-128 |
C |
p. |
artikel |
1459 |
Models for apparent reaction kinetics in heap leaching: A new semi-empirical approach and its comparison to shrinking core and other particle-scale models
|
Ferrier, Richard J. |
|
2016 |
127-128 |
C |
p. 22-33 12 p. |
artikel |
1460 |
Moderately efficient leaching of rare earth elements from phosphogypsum via crystal regulation with EDTA-2Na during gypsum phase transformation and recovery by precipitation
|
Guan, Qingjun |
|
|
127-128 |
C |
p. |
artikel |
1461 |
Moisture absorption rates via capillary suction within packed beds – The effect of material and fluid properties with implications for heap leaching operations
|
Odidi, Michael D. |
|
|
127-128 |
C |
p. |
artikel |
1462 |
Molybdate recovery using immobilized bioengineered Saccharomyces cerevisiae
|
Stephanie, Audrey |
|
|
127-128 |
C |
p. |
artikel |
1463 |
Morphology and distribution of cemented product formed via cementation over Zn in zinc sulfate solution relevant to roast-leach-electrowin process
|
Chen, Jietong |
|
|
127-128 |
C |
p. |
artikel |
1464 |
Morphology-control techniques for preparing aluminum hydroxide via wet chemical synthesis
|
Fan, Weidong |
|
|
127-128 |
C |
p. |
artikel |
1465 |
Morphology, roughness and microhardness of nickel electrodeposits produced in sulfate media on 316L SS or Ti cathodes
|
Pissolati, N.C. |
|
2018 |
127-128 |
C |
p. 193-202 |
artikel |
1466 |
MRI and gravimetric studies of hydrology in drip irrigated heaps and its effect on the propagation of bioleaching micro-organisms
|
Fagan, Marijke A. |
|
2014 |
127-128 |
C |
p. 210-221 12 p. |
artikel |
1467 |
Multimodal assessment of the curing of agglomerated ores in the presence of chloride ions
|
Salinas-Farran, Luis |
|
|
127-128 |
C |
p. |
artikel |
1468 |
Multiple laccase-mediator system treatments for carbonaceous matter degradation in double refractory gold ore
|
Cindy, |
|
|
127-128 |
C |
p. |
artikel |
1469 |
Multiscale modeling of reactive flow in heterogeneous porous microstructures
|
Paspureddi, Akhilesh |
|
|
127-128 |
C |
p. |
artikel |
1470 |
Multi-scale quantification of leaching performance using X-ray tomography
|
Lin, Q. |
|
2016 |
127-128 |
C |
p. 265-277 |
artikel |
1471 |
Mycohydrometallurgy: Biotransformation of double refractory gold ores by the fungus, Phanerochaete chrysosporium
|
Ofori-Sarpong, G. |
|
2013 |
127-128 |
C |
p. 38-44 7 p. |
artikel |
1472 |
Nanohydrometallurgical extraction of gold based on ranelate induced nanoparticles formation
|
Mattioni, João V. |
|
|
127-128 |
C |
p. |
artikel |
1473 |
Neodymium(III) and lanthanum(III) separation by magnetic nanohydrometallurgy using DTPA functionalized magnetite nanoparticles
|
Almeida, Sabrina da N. |
|
2016 |
127-128 |
C |
p. 22-28 7 p. |
artikel |
1474 |
Neodymium recovery from scrap magnet using ammonium persulfate
|
Ciro, Erwin |
|
2019 |
127-128 |
C |
p. 226-234 |
artikel |
1475 |
Neutralization of Bayer bauxite residue (red mud) by various brines: A review of chemistry and engineering processes
|
Kannan, Pravin |
|
|
127-128 |
C |
p. |
artikel |
1476 |
New cationic exchangers for the recovery of cobalt(II), nickel(II) and manganese(II) from acidic chloride solutions: Modelling of extraction curves
|
Omelchuk, Kateryna |
|
2018 |
127-128 |
C |
p. 96-103 |
artikel |
1477 |
New family of Type V eutectic solvents based on 1,10-phenanthroline and their application in metal extraction
|
Crema, Anna P.S. |
|
|
127-128 |
C |
p. |
artikel |
1478 |
New insights in the leaching kinetics of cathodic materials in acidic chloride media for lithium-ion battery recycling
|
Xuan, Wen |
|
|
127-128 |
C |
p. |
artikel |
1479 |
New insights into chalcopyrite leaching enhanced by mechanical activation
|
Li, Yubiao |
|
2019 |
127-128 |
C |
p. |
artikel |
1480 |
New method to prepare high purity anatase TiO2 through alkaline roasting and acid leaching from non-conventional minerals resource
|
Ismael, Mohamed H. |
|
|
127-128 |
C |
p. |
artikel |
1481 |
New perspectives for bio-technical treatment of oxalate-containing waste streams from bauxite processing
|
Cheng, Ka Yu |
|
|
127-128 |
C |
p. |
artikel |
1482 |
New process consisting of oxidative stripping of vanadium from loaded D2EHPA organic solution with H2O2 and direct precipitation with sulfuric acid
|
Liu, Yuan |
|
|
127-128 |
C |
p. |
artikel |
1483 |
New synergistic solvent mixture of DNPPA and bidentate octyl (phenyl) CMPO for enhanced extraction of uranium (VI) from phosphoric acid medium
|
Mondal, S. |
|
2014 |
127-128 |
C |
p. 95-102 8 p. |
artikel |
1484 |
New upstream solution for mercury removal from petroleum condensate via HFMC: Thermodynamics, kinetics, DFT and mass transport
|
Poolkaew, Waranya |
|
|
127-128 |
C |
p. |
artikel |
1485 |
Nickel(II) extraction from chloride solutions using N-2-ethylhexylpyridine-3-formamide: A new reagent toward clean hydrometallurgy and a proposed flowsheet for chloride leach liquors of nickel laterites
|
Liu, Wensen |
|
|
127-128 |
C |
p. |
artikel |
1486 |
Nickel leaching kinetics of high-grade nickel matte with sulfuric acid under atmospheric pressure
|
Liu, Xuheng |
|
|
127-128 |
C |
p. |
artikel |
1487 |
Nickel recycling through bioleaching of a Ni/Al2O3 commercial catalyst
|
Tayar, Samir Prioto |
|
|
127-128 |
C |
p. |
artikel |
1488 |
Ni-smectitic ore behaviour during the Caron process
|
Mano, Eliana S. |
|
2019 |
127-128 |
C |
p. 200-209 |
artikel |
1489 |
Non-ammonia enrichment of rare earth elements from rare earth leaching liquor in a magnesium salt system I: Precipitation by calcium oxide
|
Lai, Anbang |
|
|
127-128 |
C |
p. |
artikel |
1490 |
Non-fluoride dissolution of tantalum and niobium oxides and their separation using ion exchange
|
Nete, M. |
|
2017 |
127-128 |
C |
p. 192-198 7 p. |
artikel |
1491 |
Non-porous shrinking particle model of leaching at low liquid-to-solid ratio
|
Raschman, Pavel |
|
2019 |
127-128 |
C |
p. |
artikel |
1492 |
Novel approaches for lithium extraction from salt-lake brines: A review
|
Liu, Gui |
|
2019 |
127-128 |
C |
p. 81-100 |
artikel |
1493 |
Novel approach for removing iron-cyanide complex ions and cesium ions from solutions using hydrogel-like beads
|
Li, Weichao |
|
|
127-128 |
C |
p. |
artikel |
1494 |
Novel approach to recover rare earth metals (REMs) from Indian coal bottom ash
|
Kumari, Archana |
|
2019 |
127-128 |
C |
p. 1-7 |
artikel |
1495 |
Novel bioleaching of waste lithium ion batteries by mixed moderate thermophilic microorganisms, using iron scrap as energy source and reducing agent
|
Ghassa, Sina |
|
|
127-128 |
C |
p. |
artikel |
1496 |
Novel cationic porous materials with open architectures for highly efficient palladium recovery: Integrated experimental studies and DFT simulations
|
Wu, Pengcheng |
|
|
127-128 |
C |
p. |
artikel |
1497 |
Novel diisobutyl diamide grafted polymer resin for uranium recovery from mild nitric acid medium
|
Kumari, Vinita |
|
|
127-128 |
C |
p. |
artikel |
1498 |
Novel hydro-electrometallurgical technology for simultaneous production of manganese metal, electrolytic manganese dioxide, and manganese sulfate monohydrate
|
Tsurtsumia, Gigla |
|
2019 |
127-128 |
C |
p. 260-268 |
artikel |
1499 |
Novel lead–cobalt composite anodes for copper electrowinning
|
Nikoloski, Aleksandar N. |
|
2013 |
127-128 |
C |
p. 45-52 8 p. |
artikel |
1500 |
Novel membrane percrystallisation process for nickel sulphate production
|
Madsen, Rasmus S.K. |
|
2019 |
127-128 |
C |
p. 210-217 |
artikel |
1501 |
Novel process for recycling gold from secondary sources: Leaching of gold by dimethyl sulfoxide solutions containing copper bromide and precipitation with water
|
Yoshimura, Akihiro |
|
2014 |
127-128 |
C |
p. 177-182 6 p. |
artikel |
1502 |
Novel process for the extraction of lithium carbonate from spent lithium-containing aluminum electrolytes by leaching with aluminum nitrate and nitric acid
|
Wu, Shaohua |
|
|
127-128 |
C |
p. |
artikel |
1503 |
Novel process for the extraction of lithium from β-spodumene by leaching with HF
|
Rosales, Gustavo D. |
|
2014 |
127-128 |
C |
p. 1-6 6 p. |
artikel |
1504 |
Novel process of alumina extraction from coal fly ash by pre-desilicating—Na2CO3 activation—Acid leaching technique
|
Guo, Yanxia |
|
2017 |
127-128 |
C |
p. 418-425 |
artikel |
1505 |
Novel reduction roasting and leaching method for manganese dioxide ore using FeP slag as the reductant
|
Zhao, Qiang |
|
2019 |
127-128 |
C |
p. |
artikel |
1506 |
Novel solution injection technology for in-situ leaching of weathered crust elution-deposited rare earth ores
|
Zhang, Zhenyue |
|
2016 |
127-128 |
C |
p. 248-256 |
artikel |
1507 |
Numerical modelling of column experiments to investigate in-situ bioleaching as an alternative mining technology
|
Laurent, Gautier |
|
2019 |
127-128 |
C |
p. 272-290 |
artikel |
1508 |
Numerical modelling of hydrodynamics and gas dispersion in an autoclave
|
Appa, H. |
|
2013 |
127-128 |
C |
p. 67-75 9 p. |
artikel |
1509 |
Numerical modelling of mass transfer in an autoclave
|
Appa, H. |
|
2014 |
127-128 |
C |
p. 234-240 7 p. |
artikel |
1510 |
Numerical simulation of Lithium extraction from salt Lake brines through force environment modulation in microfluidic channels with ion concentration polarization
|
Hu, Yaru |
|
|
127-128 |
C |
p. |
artikel |
1511 |
Observation of sodium titanate and sodium aluminate silicate hydrate layers on diaspore particles in high-temperature Bayer digestion
|
Wang, Yi-lin |
|
|
127-128 |
C |
p. |
artikel |
1512 |
On the application of bulk-supported liquid membrane techniques in hydrometallurgy
|
Belova, V.V. |
|
2014 |
127-128 |
C |
p. 144-152 9 p. |
artikel |
1513 |
On the mechanism of the dissolution of gypsum (calcium sulfate dihydrate)
|
Crundwell, Frank K. |
|
|
127-128 |
C |
p. |
artikel |
1514 |
On the refractory nature of precious metal tellurides
|
Dyer, Laurence G. |
|
2017 |
127-128 |
C |
p. 488-495 |
artikel |
1515 |
On the way to develop co-containing lead anodes for zinc electrowinning
|
Alamdari, E. Keshavarz |
|
2012 |
127-128 |
C |
p. 77-86 10 p. |
artikel |
1516 |
Optimization of cobalt removal from an aqueous sulfate zinc leach solution for zinc electrowinning
|
Krause, B. |
|
2015 |
127-128 |
C |
p. 132-140 9 p. |
artikel |
1517 |
Optimization of copper and zinc extractions from polymetallic bulk concentrate and ferric iron bioregeneration under metallic stress
|
Patel, Bhargav C. |
|
2012 |
127-128 |
C |
p. 18-23 6 p. |
artikel |
1518 |
Optimization of copper electrowinning from synthetic copper sulfate solution using a pulsed bed electrode
|
Britto-Costa, Pedro H. |
|
2014 |
127-128 |
C |
p. 52-60 9 p. |
artikel |
1519 |
Optimization of leaching parameters for the extraction of rare earth metal using decision making method
|
Baral, S.S. |
|
2014 |
127-128 |
C |
p. 60-67 8 p. |
artikel |
1520 |
Optimization of LiF dissolution with Al2(SO4)3 and its application to lithium extraction by fluorination of α-spodumene
|
Rosales, Gustavo D. |
|
|
127-128 |
C |
p. |
artikel |
1521 |
Optimization of nanofiltration for treatment of acid mine drainage and copper recovery by solvent extraction
|
Pino, Luis |
|
|
127-128 |
C |
p. |
artikel |
1522 |
Optimization of packed bed electrolysis of zinc anode casing of spent dry cell batteries
|
Ahmed, Essam |
|
2016 |
127-128 |
C |
p. 176-191 16 p. |
artikel |
1523 |
Optimization of physicochemical parameters for bioleaching of sphalerite by Acidithiobacillus ferrooxidans using shaking bioreactors
|
Haghshenas, Davoud F. |
|
2012 |
127-128 |
C |
p. 22-28 7 p. |
artikel |
1524 |
Optimization of process on electrodeposition of 4N tellurium from alkaline leaching solutions
|
Zhong, Jing |
|
2018 |
127-128 |
C |
p. 17-25 |
artikel |
1525 |
Optimization of thermal pre-treatment for simultaneous and efficient release of both Co and Mo from used CoMo catalyst by bioleaching and their mechanisms
|
Qian, Can |
|
|
127-128 |
C |
p. |
artikel |
1526 |
Optimizing operating conditions in an ion-exchange column treatment applied to the removal of Sb and Bi impurities from an electrolyte of a copper electro-refining plant
|
Arroyo-Torralvo, F. |
|
2017 |
127-128 |
C |
p. 285-297 13 p. |
artikel |
1527 |
Optimizing the thiosulfate leaching of gold from printed circuit boards of discarded mobile phone
|
Ha, Vinh Hung |
|
2014 |
127-128 |
C |
p. 118-126 9 p. |
artikel |
1528 |
Optimizing vanadium and tungsten leaching with lowered silicon from spent SCR catalyst by pre-mixing treatment
|
Su, Qingfa |
|
2018 |
127-128 |
C |
p. 230-239 |
artikel |
1529 |
Options to recover high-purity MnO2 from leach liquors of manganese dust containing Mn3O4 and iron and zinc oxide as minor impurities
|
Wen, Jiangxian |
|
|
127-128 |
C |
p. |
artikel |
1530 |
Ore column leaching with thermophiles: I, copper sulfide ore
|
Norris, Paul R. |
|
2012 |
127-128 |
C |
p. 62-69 8 p. |
artikel |
1531 |
Ore column leaching with thermophiles: II, polymetallic sulfide ore
|
Norris, Paul R. |
|
2012 |
127-128 |
C |
p. 70-76 7 p. |
artikel |
1532 |
Organic compounds in the processing of lateritic bauxites to alumina Part 2: Effects of organics in the Bayer process
|
Power, Greg |
|
2012 |
127-128 |
C |
p. 125-149 25 p. |
artikel |
1533 |
Organophosphorous extractants for metals
|
Yudaev, P.A. |
|
|
127-128 |
C |
p. |
artikel |
1534 |
Overcoming the bacteriostatic effects of heavy metals on Acidithiobacillus thiooxidans for direct bioleaching of saprolitic Ni laterite ores
|
Jang, Hee-Chan |
|
2017 |
127-128 |
C |
p. 21-25 |
artikel |
1535 |
Overview of cobalt resources and comprehensive analysis of cobalt recovery from zinc plant purification residue- a review
|
Huang, Yukun |
|
|
127-128 |
C |
p. |
artikel |
1536 |
Overview of process control of novel calcification‑carbonation process for bauxite residue treatment
|
Wang, Yanxiu |
|
|
127-128 |
C |
p. |
artikel |
1537 |
Oxidation of arsenite (As(III)) by ferric iron in the presence of pyrite and a mixed moderately thermophilic culture
|
Qin, Wenqing |
|
2013 |
127-128 |
C |
p. 53-59 7 p. |
artikel |
1538 |
Oxidation of arsenite by self-regenerative bioactive birnessite in a continuous flow column reactor
|
Nishi, Ryohei |
|
|
127-128 |
C |
p. |
artikel |
1539 |
Oxidative acid leaching of indium phosphide waste and recovery of indium metal by cementation with aluminum
|
Zhang, Xiaofeng |
|
|
127-128 |
C |
p. |
artikel |
1540 |
Oxidative dissolution of nickel matte in dilute sulfuric acid solutions
|
Morcali, Mehmet Hakan |
|
2019 |
127-128 |
C |
p. 257-265 |
artikel |
1541 |
Oxidative precipitation of cerium in acidic chloride solutions: part I – Fundamentals and thermodynamics
|
McNeice, James |
|
2019 |
127-128 |
C |
p. 140-150 |
artikel |
1542 |
Oxidative precipitation of cerium in acidic chloride solutions: Part II – oxidation in a mixed REE system
|
McNeice, James |
|
|
127-128 |
C |
p. |
artikel |
1543 |
Oxidative pretreatment of refractory gold ore using persulfate under ultrasound for efficient leaching of gold by a novel eco-friendly lixiviant: Demonstration of the effect of particle size and economic benefits
|
Gui, Qihao |
|
|
127-128 |
C |
p. |
artikel |
1544 |
Oxidative stripping of vanadium from mixed solvents of D2EHPA and TBP by hydrogen peroxide
|
Yan, Zhiliang |
|
2013 |
127-128 |
C |
p. 9-12 4 p. |
artikel |
1545 |
Oxyanion removal and recovery using silica polyamine composites
|
Kailasam, Varadharajan |
|
|
127-128 |
C |
p. 97-104 |
artikel |
1546 |
Oxygen evolution and corrosion behavior of low-MnO2-content Pb-MnO2 composite anodes for metal electrowinning
|
Ma, Ruixin |
|
2016 |
127-128 |
C |
p. 6-11 6 p. |
artikel |
1547 |
Oxygen evolution and corrosion behavior of Pb-CeO2 anodes in sulfuric acid solution
|
Wang, Wenjun |
|
2019 |
127-128 |
C |
p. 221-229 |
artikel |
1548 |
Oxygen solubility in copper bioleaching solutions
|
Mazuelos, Alfonso |
|
2017 |
127-128 |
C |
p. 1-7 7 p. |
artikel |
1549 |
Ozonation leaching of a complex sulfidic antimony ore in hydrochloric acid solution
|
Tian, Qinghua |
|
2016 |
127-128 |
C |
p. 126-131 6 p. |
artikel |
1550 |
Palladium(II) extraction from acidic chloride media using an ionic liquid-based aqueous two-phase system (IL-ATPS) in the presence of dipotassium hydrogen phosphate salting-out agent and reductive stripping with hydrazine hydrate to recover palladium metal
|
Zhang, Qin |
|
|
127-128 |
C |
p. |
artikel |
1551 |
Palladium(II) sorption of a diethylphosphate-modified thiacalix[6]arene immobilized on amberlite resin
|
Kimuro, Takashi |
|
2017 |
127-128 |
C |
p. 254-261 8 p. |
artikel |
1552 |
Palladium particle recovery from nitrile butadiene rubber dissolved in acetone through precipitation of poly(2-(dimethylamino)ethyl methacrylate)
|
Kajiwara, Takafumi |
|
2018 |
127-128 |
C |
p. 73-78 |
artikel |
1553 |
Parameters influencing the microbial oxidation activity in the industrial bioleaching heap at Escondida mine, Chile
|
Soto, Pamela E. |
|
2013 |
127-128 |
C |
p. 51-57 7 p. |
artikel |
1554 |
Partitioning and transformation behavior of Cd(II) and As(V) during As(V)-Cd(II)-Fe(III) coprecipitation: Effect of aging under aerobic conditions at pH 5 and 11 relevant to tailings and acid waste
|
Zhang, Jiaxi |
|
|
127-128 |
C |
p. |
artikel |
1555 |
Pb-based aggregate, Ge-galena coexistence, and Ge-anglesite coprecipitate—Limitations and an improvement of germanium recovery from secondary zinc oxide via H2SO4 leaching
|
Jiang, Tao |
|
|
127-128 |
C |
p. |
artikel |
1556 |
Pb(II) removal with hydrophobic quaternary pyridinium salt and methyl isobutyl ketone
|
Wojciechowska, Aleksandra |
|
2017 |
127-128 |
C |
p. 206-212 7 p. |
artikel |
1557 |
Peculiar shuttle-like nano-sized TiO(OH)2/C lithium ion sieve with improved adsorption rate and cycling reliability: Preparation and kinetics
|
Yu, Cheng-Long |
|
|
127-128 |
C |
p. |
artikel |
1558 |
Penidiella sp. strain T9 is an effective dysprosium accumulator, incorporating dysprosium as dysprosium phosphate compounds
|
Horiike, Takumi |
|
2016 |
127-128 |
C |
p. 260-265 6 p. |
artikel |
1559 |
Percolation bioleaching of copper and zinc and gold recovery from flotation tailings of the sulfide complex ores of the Ural region, Russia
|
Kondrat'eva, Tamara F. |
|
2012 |
127-128 |
C |
p. 82-86 5 p. |
artikel |
1560 |
Performance evaluation of acid mist reduction techniques in copper electrowinning
|
Al Shakarji, Reza |
|
2013 |
127-128 |
C |
p. 76-80 5 p. |
artikel |
1561 |
Peroxodisulfate assisted leaching of chalcopyrite
|
Dakubo, Francis |
|
2012 |
127-128 |
C |
p. 68-73 6 p. |
artikel |
1562 |
Pharmaceutical blister waste recycling using biogenic sulfuric acid: Effect of sulfur source and blister material on bioleaching efficiency
|
Kremser, Klemens |
|
|
127-128 |
C |
p. |
artikel |
1563 |
Phase characterization and thermochemical simulation of (landfilled) bauxite residue (“red mud”) in different alkaline processes optimized for aluminum recovery
|
Kaußen, F.M. |
|
2018 |
127-128 |
C |
p. 49-61 |
artikel |
1564 |
Phase diagrams of CoSO4-H2O and CoSO4-H2SO4-H2O systems for CoSO4·nH2O (n = 6,7) recovery by cooling and eutectic freeze crystallization
|
Ma, Yiqian |
|
|
127-128 |
C |
p. |
artikel |
1565 |
Phase evolution and elemental distribution of zinc and germanium during the sulfide roasting, zinc fuming and leaching processes: Benefit of pretreating zinc oxide dust
|
Zhu, Yundong |
|
|
127-128 |
C |
p. |
artikel |
1566 |
Phase transformation kinetics of calcium sulfate phases in strong CaCl2
HCl solutions
|
Feldmann, Thomas |
|
|
127-128 |
C |
p. 126-134 |
artikel |
1567 |
Photocurrents at chalcopyrite and pyrite electrodes under leaching conditions
|
Nicol, Michael J. |
|
2016 |
127-128 |
C |
p. 104-107 4 p. |
artikel |
1568 |
Physicochemical factors affecting leaching of laterite ore in hydrochloric acid
|
Li, Jinhui |
|
|
127-128 |
C |
p. 14-18 |
artikel |
1569 |
Phytoremediation experiments with Helianthus tuberosus under different pH and heavy metal soil concentrations
|
Willscher, S. |
|
2017 |
127-128 |
C |
p. 153-158 |
artikel |
1570 |
Pilot plant study on manganese bioleaching using biomass decomposition products as a nutrient source and electrolysis for oxide precipitation
|
Borkar, Palas Kamlakar |
|
|
127-128 |
C |
p. |
artikel |
1571 |
Pilot-scale plant study on the innovative nitric acid pressure leaching technology for laterite ores
|
Ma, Baozhong |
|
2015 |
127-128 |
C |
p. 88-94 7 p. |
artikel |
1572 |
Pilot test and cost-based feasibility study of solar-assisted evaporation for direct preparation of high-purity magnesium sulfate hydrates from metastable Na+,Mg2+//Cl−,SO4
2−-H2O salt-water system
|
Cheng, Huaigang |
|
2019 |
127-128 |
C |
p. |
artikel |
1573 |
Piperidinium based ionic liquid in combination with sulphoxides: Highly efficient solvent systems for the extraction of thorium
|
Priya, S. |
|
2016 |
127-128 |
C |
p. 111-117 |
artikel |
1574 |
Platinum, palladium and gold leaching from magnetite ore, with concentrated chloride solutions and ozone
|
Torres, Robinson |
|
2016 |
127-128 |
C |
p. 185-194 10 p. |
artikel |
1575 |
Pollution control and metal resource recovery for acid mine drainage
|
Chen, Tao |
|
2014 |
127-128 |
C |
p. 112-119 8 p. |
artikel |
1576 |
Polyethylenimine-coated biomass-chitosan composite fibers for recovery of ruthenium from industrial effluents: Effects of chitosan molecular weight and drying method
|
Song, Myung-Hee |
|
2018 |
127-128 |
C |
p. 114-120 |
artikel |
1577 |
Polymer anode used in hydrometallurgy: Anodic behaviour of PANI/CeO2/WC anode from sulfate electrolytes
|
Jin, Lei |
|
2018 |
127-128 |
C |
p. 201-207 |
artikel |
1578 |
Polysulfides do not cause passivation: Results from the dissolution of pyrite and implications for other sulfide minerals
|
Holmes, P.R |
|
2013 |
127-128 |
C |
p. 101-110 10 p. |
artikel |
1579 |
Pore structure evolution and mechanism of plugging during dissolution-erosion of acid leaching minerals from uranium-bearing sandstone
|
Song, Jiayin |
|
|
127-128 |
C |
p. |
artikel |
1580 |
Possibility of uranium and rare metal recovery in the Polish copper mining industry
|
Chmielewski, Andrzej Grzegorz |
|
2016 |
127-128 |
C |
p. 12-18 7 p. |
artikel |
1581 |
Post operation inactivation of acidophilic bioleaching microorganisms using natural chloride-rich mine water
|
Bomberg, Malin |
|
2018 |
127-128 |
C |
p. 236-245 |
artikel |
1582 |
Potential-controlled selective recovery of manganese and cobalt from cobalt slag leaching solution
|
Tian, Qinghua |
|
2017 |
127-128 |
C |
p. 201-206 |
artikel |
1583 |
Potential of metals leaching from printed circuit boards with biological and chemical lixiviants
|
Van Yken, Jonovan |
|
|
127-128 |
C |
p. |
artikel |
1584 |
Potential of single and designed mixed cultures to enhance the bioleaching of chalcopyrite by oxidation-reduction potential control
|
Ríos, Daniela |
|
|
127-128 |
C |
p. |
artikel |
1585 |
Precious metal extraction by N,N,N′,N′-tetraoctyl-thiodiglycolamide and its comparison with N,N,N′,N′-tetraoctyl-diglycolamide and methylimino-N,N′-dioctylacetamide
|
Sasaki, Yuji |
|
2017 |
127-128 |
C |
p. 576-584 |
artikel |
1586 |
Precious metals recovery from waste printed circuit boards using thiosulfate leaching and ion exchange resin
|
Gámez, Sebastián |
|
2019 |
127-128 |
C |
p. 1-11 |
artikel |
1587 |
Precipitation behavior of Ca(OH)2, Mg(OH)2, and Mn(OH)2 from CaCl2, MgCl2, and MnCl2 in NaOH-H2O solutions and study of lithium recovery from seawater via two-stage precipitation process
|
Um, Namil |
|
2014 |
127-128 |
C |
p. 142-148 7 p. |
artikel |
1588 |
Precipitation behaviour of As(V) during neutralization of acidic Fe(II)−As(V) solutions in batch and continuous modes
|
Daenzer, Renaud |
|
2014 |
127-128 |
C |
p. 40-47 8 p. |
artikel |
1589 |
Precipitation of copper from cyanide leach solutions using sodium dimethyldithiocarbamate (SDDC)
|
Yilmaz, E. |
|
|
127-128 |
C |
p. |
artikel |
1590 |
Precipitation of desilication products in CaO-Na2O-Al2O3-SiO2-H2O system based on the Bayer process
|
Pan, Xiaolin |
|
|
127-128 |
C |
p. |
artikel |
1591 |
Precipitation of α-Fe2O3 and recovery of Ni and Co from synthetic laterite-leaching solutions
|
Zhang, Peiyu |
|
2015 |
127-128 |
C |
p. 21-29 9 p. |
artikel |
1592 |
Precipitation of impurity ions from zinc leach solutions with high iron contents - A special emphasis on cobalt precipitation
|
Güler, Erkan |
|
2016 |
127-128 |
C |
p. 118-124 |
artikel |
1593 |
Precipitation of monosodium aluminate hydrate from concentrated sodium aluminate solution
|
You, Shaowei |
|
2019 |
127-128 |
C |
p. 125-129 |
artikel |
1594 |
Precipitation of rare earth phosphates through apatite leach as by-product of nitrophos acid from unconventional phosphate deposit of carbonatite, Malakand, Pakistan
|
Arshad, Farva |
|
|
127-128 |
C |
p. |
artikel |
1595 |
Precipitation of Ru, Rh and Ir with iron ions from synthetic nickel sulphate leach solutions
|
Coetzee, R. |
|
2018 |
127-128 |
C |
p. 79-92 |
artikel |
1596 |
Precipitation of vanadium from Bayer liquor with lime
|
Zhao, Zhuo |
|
2012 |
127-128 |
C |
p. 52-56 5 p. |
artikel |
1597 |
Precipitation of vanadium using ammonium salt in alkaline and acidic media and the effect of sodium and phosphorus
|
Xiong, Pu |
|
2018 |
127-128 |
C |
p. 113-120 |
artikel |
1598 |
Predicting HCN gas generation in the SART process
|
Estay, Humberto |
|
2012 |
127-128 |
C |
p. 131-142 12 p. |
artikel |
1599 |
Prediction of holdup and drop size distribution in a disc-doughnut pulsed column with tenova kinetics internals for the water-Alamine 336 system
|
Li, Wen |
|
2018 |
127-128 |
C |
p. 82-90 |
artikel |
1600 |
Preferential flow behaviour in unsaturated packed beds and heaps: Incorporating into a CFD model
|
McBride, D. |
|
2017 |
127-128 |
C |
p. 402-411 10 p. |
artikel |
1601 |
Preliminary study on preparation of ammonium metatungstate from ammonium tungstate solutions using bipolar membrane electrodialysis
|
Guan, Wenjuan |
|
2017 |
127-128 |
C |
p. 239-244 |
artikel |
1602 |
Preparation and characterization of high-stability lithium ion-sieves with aluminosilicate framework
|
Hu, Haisheng |
|
|
127-128 |
C |
p. |
artikel |
1603 |
Preparation of basic lead oxide from spent lead acid battery paste via chemical conversion
|
Zhu, Xinfeng |
|
2012 |
127-128 |
C |
p. 24-31 8 p. |
artikel |
1604 |
Preparation of CeO2 by ion-exchange membrane electrolysis method
|
Meng, Deliang |
|
2019 |
127-128 |
C |
p. 126-131 |
artikel |
1605 |
Preparation of gamma alumina nanoparticles from kaolinitic sandstone and their application as a selective adsorbent for REEs from liquid waste
|
Fawzy, Mona M. |
|
|
127-128 |
C |
p. |
artikel |
1606 |
Preparation of highly pure vanadyl sulfate electrolyte from vanadium slag leach solution with the complexing effect of EDTA on Fe(III)
|
Zhang, Ying |
|
2019 |
127-128 |
C |
p. 54-63 |
artikel |
1607 |
Preparation of high purity indium by chemical purification: Focus on removal of Cd, Pb, Sn and removal mechanism
|
Xu, Shuo |
|
|
127-128 |
C |
p. |
artikel |
1608 |
Preparation of high-purity iron oxide from end-of-life NdFeB magnet waste
|
Chai, Zhouyi |
|
|
127-128 |
C |
p. |
artikel |
1609 |
Preparation of high-value TiO2 nanowires by leaching of hydrolyzed titania residue from natural ilmenite
|
Wu, Feixiang |
|
2013 |
127-128 |
C |
p. 82-88 7 p. |
artikel |
1610 |
Preparation of H2TiO3–lithium adsorbent using low-grade titanium slag
|
Tang, Dahai |
|
2015 |
127-128 |
C |
p. 90-96 7 p. |
artikel |
1611 |
Preparation of layered titanate nanosheets and the application for Cs+ adsorption from wastewater, effluents and a simulated brine
|
Geng, Wanlei |
|
|
127-128 |
C |
p. |
artikel |
1612 |
Preparation of lead carbonate from spent lead paste via chemical conversion
|
Zhu, Xinfeng |
|
2013 |
127-128 |
C |
p. 47-53 7 p. |
artikel |
1613 |
Preparation of LiNi0.8Co0.1Mn0.1O2 cathode materials from the hydrochloric acid leaching of laterite: A short and low-cost process
|
Ma, Fei |
|
|
127-128 |
C |
p. |
artikel |
1614 |
Preparation of lithium carbonate from waste lithium solution through precipitation and wet conversion methods
|
Shin, Junho |
|
|
127-128 |
C |
p. |
artikel |
1615 |
Preparation of magnesium hydroxide from leachate of dolomitic phosphate ore with dilute waste acid from titanium dioxide production
|
Xiong, Yang |
|
2014 |
127-128 |
C |
p. 137-144 8 p. |
artikel |
1616 |
Preparation of Mg-doped Li1.6Mn1.6O4 with enhanced Li+ adsorption performance and anti-dissolution properties of Mn
|
Bao, Luri |
|
|
127-128 |
C |
p. |
artikel |
1617 |
Preparation of Mg(OH)2 with caustic calcined magnesia through ammonium acetate circulation
|
Guo, Hongfan |
|
2015 |
127-128 |
C |
p. 13-19 7 p. |
artikel |
1618 |
Preparation of MoS2 microspheres through surfactants-assisted hydrothermal synthesis using thioacetamide as reducing agent
|
Cui, Yaru |
|
2016 |
127-128 |
C |
p. 184-188 |
artikel |
1619 |
Preparation of new alginate capsules enclosing diatomite and organic extractants to uptake lanthanum
|
Colakoglu, Tunc |
|
|
127-128 |
C |
p. |
artikel |
1620 |
Preparation of phosphor-tungstic acids (H3PW12O40) by solvent extraction with 2-octanol
|
Li, Yongli |
|
2019 |
127-128 |
C |
p. 291-296 |
artikel |
1621 |
Preparation of strontium carbonate via celestite leaching in NaHCO3 using two interconnected reactors
|
Yan, Fangjia |
|
|
127-128 |
C |
p. |
artikel |
1622 |
Preparation of sulfur-containing functional group-modified resin and its tungsten‑molybdenum adsorption and separation performance with application to waste-alloy leachate
|
Shi, Tiantian |
|
|
127-128 |
C |
p. |
artikel |
1623 |
Preparation of synthetic rutile from pre-treated ilmenite/Ti-rich slag with phenol and resorcinol leaching solutions
|
Samal, Sneha |
|
2013 |
127-128 |
C |
p. 8-12 5 p. |
artikel |
1624 |
Preparation of vanadyl sulfate electrolyte for vanadium flow battery from vanadium slag using calcium salt precipitation, sodium carbonate leaching and solvent extraction
|
Wang, Zhenghao |
|
|
127-128 |
C |
p. |
artikel |
1625 |
Preparation of V2O5 using Pb5(VO4)3OH recovered from Bayer vanadium sludge through H2SO4 pre-treatment, H2O2 leaching, V5O12∙6H2O and V10O24∙12H2O precipitation and oxidative roasting at 400 °C
|
Zhang, Changda |
|
|
127-128 |
C |
p. |
artikel |
1626 |
Preparation of Zn–Mn ferrite from spent Zn–Mn batteries using a novel multi-step process of bioleaching and co-precipitation and boiling reflux
|
Song, Yinan |
|
2015 |
127-128 |
C |
p. 66-73 8 p. |
artikel |
1627 |
Pressure acid leaching of Çaldağ lateritic nickel ore: An alternative to heap leaching
|
Önal, Mehmet Ali Recai |
|
2014 |
127-128 |
C |
p. 98-107 10 p. |
artikel |
1628 |
Pressure aqueous oxidation of molybdenite concentrate with oxygen
|
Fu, Yun-feng |
|
2017 |
127-128 |
C |
p. 131-139 9 p. |
artikel |
1629 |
Pressure leaching of aluminum from kaolin by HCl: Experimental and DFT study
|
Al-Harahsheh, Mohammad |
|
|
127-128 |
C |
p. |
artikel |
1630 |
Pressure leaching of manganotantalite by sulfuric acid using ammonium fluoride as an assistant reagent
|
Yang, Xiuli |
|
2018 |
127-128 |
C |
p. 348-353 |
artikel |
1631 |
Pressure leaching technique for manganese smelter dust
|
Xie, Hongyan |
|
2013 |
127-128 |
C |
p. 96-101 6 p. |
artikel |
1632 |
Pressure oxidation leaching of an enargite concentrate in the presence of polytetrafluoroethylene beads
|
Govindaiah, Patakamuri |
|
2015 |
127-128 |
C |
p. 340-347 8 p. |
artikel |
1633 |
Pressure oxidation of ferrous ions by oxygen and hematite precipitation from concentrated solution of calcium, copper and iron chlorides
|
Lu, Jianming |
|
2013 |
127-128 |
C |
p. 59-65 7 p. |
artikel |
1634 |
Pressure oxidation of sodium thioantimonite solution to prepare sodium pyroantimonate
|
duchao, Zhang |
|
2015 |
127-128 |
C |
p. 91-97 7 p. |
artikel |
1635 |
Pressure oxidative leaching of Indian chromite ore in concentrated NaOH solution
|
Zhang, Hai |
|
2014 |
127-128 |
C |
p. 47-55 9 p. |
artikel |
1636 |
Pretreatment of a refractory arsenopyritic gold ore using hydroxyl ion
|
Mesa Espitia, Sandra L. |
|
2015 |
127-128 |
C |
p. 106-113 8 p. |
artikel |
1637 |
Pretreatment with acidic ferric sulfate leaching promotes the bioleaching of bornite
|
Liu, Shitong |
|
|
127-128 |
C |
p. |
artikel |
1638 |
Primary copper sulfides bioleaching vs. chloride leaching: Advantages and drawbacks
|
Bobadilla-Fazzini, Roberto A. |
|
2017 |
127-128 |
C |
p. 26-31 |
artikel |
1639 |
Probing the effect of aqueous impurities on the leaching of chalcopyrite under controlled conditions
|
Qian, Gujie |
|
2014 |
127-128 |
C |
p. 195-209 15 p. |
artikel |
1640 |
Process analysis and study of factors affecting the lithium carbonate crystallization from sulfate media during lithium extraction
|
Liu, Hongting |
|
|
127-128 |
C |
p. |
artikel |
1641 |
Process development and optimization for platinum recovery from PEM fuel cell catalyst
|
Duclos, L. |
|
2016 |
127-128 |
C |
p. 79-89 11 p. |
artikel |
1642 |
Process development for hydrometallurgical recovery of valuable metals from sulfide-rich residue generated in a secondary lead smelter
|
Kim, Eunyoung |
|
2017 |
127-128 |
C |
p. 589-598 |
artikel |
1643 |
Process development for selective precipitation of valuable metals and simultaneous synthesis of single-phase spinel ferrites from saprolite-limonite laterite leach liquors
|
Gao, Jian-ming |
|
2017 |
127-128 |
C |
p. 98-105 8 p. |
artikel |
1644 |
Process development for the separation of niobium and tantalum from fluoride medium using trioctyl amine and application of Taguchi's method to optimize solvent extraction parameters
|
Dutta, Snehasis |
|
|
127-128 |
C |
p. |
artikel |
1645 |
Process for recovering molybdenum and tungsten from MoS3/WS3 precipitates
|
Pastukhov, A.M. |
|
2015 |
127-128 |
C |
p. 78-81 4 p. |
artikel |
1646 |
Process for the separation of thorium and rare earth elements from radioactive waste residues using Cyanex® 572 as a new extractant
|
Wang, Yanliang |
|
2017 |
127-128 |
C |
p. 158-164 |
artikel |
1647 |
Process for uranium recovery using Cyanex 272
|
Quinn, James E. |
|
2015 |
127-128 |
C |
p. 7-12 6 p. |
artikel |
1648 |
Processing anatase ores for pigment production
|
Barnard, Keith R. |
|
2019 |
127-128 |
C |
p. 226-237 |
artikel |
1649 |
Processing of anode slime with deep eutectic solvents as a green leachant
|
Topçu, Mehmet A. |
|
|
127-128 |
C |
p. |
artikel |
1650 |
Processing of a rare earth phosphate concentrate obtained in the nitrophosphate process of fertilizer production
|
Alemrajabi, Mahmood |
|
2019 |
127-128 |
C |
p. |
artikel |
1651 |
Processing of lithium ores: Industrial technologies and case studies – A review
|
Yelatontsev, Dmytro |
|
|
127-128 |
C |
p. |
artikel |
1652 |
Processing of rare earth phosphate concentrates: A comparative study of pre-leaching with perchloric, hydrochloric, nitric and phosphoric acids and deportment of minor/major elements
|
Stone, K. |
|
2016 |
127-128 |
C |
p. 137-147 11 p. |
artikel |
1653 |
Processing of the mineralized Black Mica for the recovery of uranium, rare earth elements, niobium, and tantalum
|
Ibrahim, Mohamed E. |
|
|
127-128 |
C |
p. |
artikel |
1654 |
Processing of the xenotime concentrate of Southwestern Sinai via alkali fusion and solvent extraction
|
El Hady, Saleh M. |
|
2016 |
127-128 |
C |
p. 115-119 5 p. |
artikel |
1655 |
Processing of titanomagnetite concentrate with a hydrochloric extract of n-octanol
|
Kopkova, E.K. |
|
2015 |
127-128 |
C |
p. 21-27 7 p. |
artikel |
1656 |
Process intensification in precipitation of uranium from post alkali leach liquor using re-dissolution of sodium diuranate slurry: A short review of laboratory and pilot scale test results
|
Sharma, Vipin Kumar |
|
|
127-128 |
C |
p. |
artikel |
1657 |
Process investigation of the acid leaching of rare earth elements from phosphogypsum using HCl, HNO3, and H2SO4
|
Walawalkar, Mugdha |
|
2016 |
127-128 |
C |
p. 195-204 10 p. |
artikel |
1658 |
Process mineralogy of refractory gold ore in thiosulfate solutions
|
Ospina-Correa, Juan D. |
|
2018 |
127-128 |
C |
p. 104-113 |
artikel |
1659 |
Process monitoring of cobalt carbonate precipitation by reactions between cobalt sulfate and sodium carbonate solutions to control product morphology and purity
|
Zhang, Jianxin |
|
|
127-128 |
C |
p. |
artikel |
1660 |
Process parameters affecting the efficiency of indium electrowinning results from sulfate baths
|
Dell'Era, Alessandro |
|
|
127-128 |
C |
p. |
artikel |
1661 |
Process study of chloride roasting and water leaching for the extraction of valuable metals from spent lithium-ion batteries
|
Jian, Yang |
|
|
127-128 |
C |
p. |
artikel |
1662 |
Production of copper cathode from oxidized copper ores by acidic leaching and two-step precipitation followed by electrowinning
|
Kamran Haghighi, Hossein |
|
2013 |
127-128 |
C |
p. 111-117 7 p. |
artikel |
1663 |
Production of crystalline boric acid and sodium citrate from borax decahydrate
|
Elbeyli, İffet Yakar |
|
2015 |
127-128 |
C |
p. 19-26 8 p. |
artikel |
1664 |
Production of electrolytic zinc powder from zinc anode casing of spent dry cell batteries
|
Owais, Ashour |
|
2015 |
127-128 |
C |
p. 60-71 12 p. |
artikel |
1665 |
Production of ferronickel from limonitic laterite ore using hydrogen reduction and cementation
|
Wijenayake, Janaka Jayamini |
|
|
127-128 |
C |
p. |
artikel |
1666 |
Production of low-sulfur hematite by hydrothermal oxydrolysis of ferrous sulfate
|
Li, Cunxiong |
|
2018 |
127-128 |
C |
p. 294-300 |
artikel |
1667 |
Production of Mn3O4 nanoparticles from a manganiferous iron ore via reductive leaching, precipitation, and calcination
|
Altiner, Mahmut |
|
|
127-128 |
C |
p. |
artikel |
1668 |
Production of rhenium nanoparticles by low-temperature aqueous-phase reduction of NH4ReO4 using NaBH4
|
Tang, Anyang |
|
|
127-128 |
C |
p. |
artikel |
1669 |
Production of sodium and aluminum chemicals and recovery of rare earth elements after leaching cryolite from Pitinga mine (Amazonas - Brazil) with sulfuric acid
|
Paulino, Jéssica Frontino |
|
2018 |
127-128 |
C |
p. 254-261 |
artikel |
1670 |
Production of α-Ti(HPO4)2·H2O, TiP2O7 and (TiO)2P2O7 from ilmenite by KOH roasting, H3PO4 leaching and calcination
|
Kulathunga, Ushan S. |
|
|
127-128 |
C |
p. |
artikel |
1671 |
Promotion of copper electrolyte self-purification with antimonic oxides
|
Wang, Xingming |
|
2018 |
127-128 |
C |
p. 28-34 |
artikel |
1672 |
Promotion of manganese extraction and flue gas desulfurization with manganese ore by iron in the anodic solution of electrolytic manganese
|
Yao, Lu |
|
|
127-128 |
C |
p. |
artikel |
1673 |
Properties and application of ionic liquids in leaching base/precious metals from e-waste. A review.
|
Barrueto, Yahaira |
|
|
127-128 |
C |
p. |
artikel |
1674 |
Properties governing flow of solution and air through crushed ore for heap leaching: Part II unsaturated dual-phase flow
|
Robertson, S.W. |
|
|
127-128 |
C |
p. |
artikel |
1675 |
Properties governing the flow of solution through crushed ore for heap leaching
|
Robertson, S.W. |
|
|
127-128 |
C |
p. |
artikel |
1676 |
Properties governing the flow of solution through crushed ore for heap leaching: Part III – Low-permeability ores
|
Robertson, S.W. |
|
|
127-128 |
C |
p. |
artikel |
1677 |
Prospective directions for biohydrometallurgy
|
Kaksonen, Anna H. |
|
|
127-128 |
C |
p. |
artikel |
1678 |
Publisher's Note
|
|
|
2019 |
127-128 |
C |
p. |
artikel |
1679 |
Pulsed electric discharge treatment of uranium leaching solutions: A method for accelerated extraction
|
Kornev, I. |
|
2016 |
127-128 |
C |
p. 37-41 5 p. |
artikel |
1680 |
Pulsed electrolysis: An efficient approach to enhancing purity from 4N to 6N copper
|
Tian, Qing-hua |
|
|
127-128 |
C |
p. |
artikel |
1681 |
Purification and stripping of tantalum from organic phase and elimination of emulsification by ultrasound
|
Yang, Xiuli |
|
2014 |
127-128 |
C |
p. 138-141 4 p. |
artikel |
1682 |
Purification of bismuthinite concentrate by selective electro-oxidation of molybdenite
|
Cao, Zhan-fang |
|
2015 |
127-128 |
C |
p. 95-101 7 p. |
artikel |
1683 |
Purification of high iron wet-process phosphoric acid via oxalate precipitation method
|
Abdel-Ghafar, H.M. |
|
2019 |
127-128 |
C |
p. 1-8 |
artikel |
1684 |
Purification of metallurgical-grade silicon via acid leaching, calcination and quenching before boron complexation
|
Sun, Yan-Hui |
|
2013 |
127-128 |
C |
p. 64-72 9 p. |
artikel |
1685 |
Purification of nickel from multicomponent aqueous sulfuric solutions by synergistic solvent extraction using Cyanex 272 and Versatic 10
|
Guimarães, Alexandre Silva |
|
2014 |
127-128 |
C |
p. 173-177 5 p. |
artikel |
1686 |
Purification of nickel or cobalt ion containing effluents by electrolysis on reticulated vitreous carbon cathode
|
Dell'Era, A. |
|
2014 |
127-128 |
C |
p. 1-8 8 p. |
artikel |
1687 |
Purification of reduced upgraded titania slag by iron removal using mild acids
|
Cho, Jaehun |
|
2016 |
127-128 |
C |
p. 7-13 7 p. |
artikel |
1688 |
Purification of titanium oxycarbonitride by leaching from titanium slag with carbothermal reduction
|
Wang, Jingxiu |
|
|
127-128 |
C |
p. |
artikel |
1689 |
Purification of zinc sulfate solutions from chloride using extraction with mixtures of a trialkyl phosphine oxide and organophosphorus acids
|
Fleitlikh, I.Y. |
|
2017 |
127-128 |
C |
p. 585-588 |
artikel |
1690 |
Pyrargyrite (Ag3SbS3): Silver and antimony dissolution by ozone oxidation in acid media
|
Rodríguez-Rodríguez, C. |
|
2016 |
127-128 |
C |
p. 15-23 |
artikel |
1691 |
Pyrite from Zarshuran Carlin-type gold deposit: Characterization, alkaline oxidation pretreatment, and cyanidation
|
Bidari, Ehsan |
|
2018 |
127-128 |
C |
p. 222-231 |
artikel |
1692 |
Quantification and recovery prospects of critical metals and rare earth elements in Victorian brown coal fly ash: A promising secondary source for critical metal extraction
|
Thomas, Bennet Sam |
|
|
127-128 |
C |
p. |
artikel |
1693 |
Quantitative assessment of the effect of pyrite inclusions on chalcopyrite electrochemistry under oxidizing conditions
|
Majuste, D. |
|
2012 |
127-128 |
C |
p. 167-176 10 p. |
artikel |
1694 |
Quantitative mineralogy and geochemistry of pelletized sulfide-bearing gold concentrates in an alkaline heap leach
|
Holley, Elizabeth A. |
|
2018 |
127-128 |
C |
p. 130-142 |
artikel |
1695 |
Radionuclide-bearing minerals in Olympic Dam copper concentrates
|
Rollog, Mark |
|
2019 |
127-128 |
C |
p. |
artikel |
1696 |
Rapid and selective adsorption of Li+ from concentrated seawater using repulsive force of Al3+–crosslinked alginate composite incorporated with hydrogen manganese oxide
|
Park, Sung Ho |
|
|
127-128 |
C |
p. |
artikel |
1697 |
Rapid and selective leaching of actinides and rare earth elements from rare earth-bearing minerals and ores
|
Whitty-Léveillé, Laurence |
|
2018 |
127-128 |
C |
p. 187-196 |
artikel |
1698 |
Rapid and selective recovery of heavy rare earths by using an adsorbent with diglycol amic acid group
|
Ogata, Takeshi |
|
2015 |
127-128 |
C |
p. 105-109 5 p. |
artikel |
1699 |
Rapid and selective separation of iridium ions from aqueous solutions using nano-Al2O3
|
Zhang, Lei |
|
2012 |
127-128 |
C |
p. 8-15 8 p. |
artikel |
1700 |
Rapid atmospheric leaching of enargite in acidic ferric sulfate media
|
Rivera-Vasquez, Berny F |
|
2015 |
127-128 |
C |
p. 149-158 10 p. |
artikel |
1701 |
Rapid synthesis of scheelite SrWO4 particles using a natural SrSO4 ore under alkaline hydrothermal conditions
|
Rendón-Angeles, J.C. |
|
2015 |
127-128 |
C |
p. 116-126 11 p. |
artikel |
1702 |
Rare earth dissolution from polishing powder waste in H2O2-H2SO4 system: Condition optimization and leaching mechanism
|
Chen, Lin |
|
|
127-128 |
C |
p. |
artikel |
1703 |
Rare earth elements (bio)leaching from zircon and eudialyte concentrates
|
Hedrich, Sabrina |
|
|
127-128 |
C |
p. |
artikel |
1704 |
Reaction and transformation behaviors of ferric oxides and titanium oxide in diasporic bauxite during an alkaline hydrothermal process
|
Ibrahim, Muhammad |
|
|
127-128 |
C |
p. |
artikel |
1705 |
Reaction behaviors and amorphization effects of titanate species in pure substance systems relating to Bayer digestion
|
Wang, Yanxiu |
|
2017 |
127-128 |
C |
p. 86-94 9 p. |
artikel |
1706 |
Reaction behaviors of iron and hematite in sodium aluminate solution at elevated temperature
|
Li, Xiao-bin |
|
2018 |
127-128 |
C |
p. 257-265 |
artikel |
1707 |
Reaction kinetics of shearing-enhanced goethite process for iron removal from zinc solution
|
Nan, Tianxiang |
|
|
127-128 |
C |
p. |
artikel |
1708 |
Reactions of lime under high temperature Bayer digestion conditions
|
Smith, Peter |
|
2017 |
127-128 |
C |
p. 16-23 |
artikel |
1709 |
Reactive extraction of sodium hydroxide from alkali solutions for the separation of sodium and aluminum — Part I. Effect of extractant
|
Zhang, Ying |
|
2015 |
127-128 |
C |
p. 47-55 9 p. |
artikel |
1710 |
Reactive extraction of sodium hydroxide from alkali solutions for the separation of sodium and aluminum—Part II. Effect of diluent
|
Zhang, Ying |
|
2015 |
127-128 |
C |
p. 107-115 9 p. |
artikel |
1711 |
Reactive liquid-liquid test system ZnSO4/D2EHPA: Equilibrium, thermochemical, structural, and spectroscopic insights from experiments and density functional theory
|
Pereira, Alexandre Moni |
|
|
127-128 |
C |
p. |
artikel |
1712 |
Reactive transport in the underground leaching of uranium: Asymptotic analytical solution for multi-reaction model
|
Panfilov, Mikhail |
|
2016 |
127-128 |
C |
p. 60-72 13 p. |
artikel |
1713 |
Recent advances in lithium extraction from lithium-bearing clay minerals
|
Zhao, Hao |
|
|
127-128 |
C |
p. |
artikel |
1714 |
Recent advances on electrodialysis for the recovery of lithium from primary and secondary resources
|
Gmar, Soumaya |
|
2019 |
127-128 |
C |
p. |
artikel |
1715 |
Recent progress in biohydrometallurgy and microbial characterisation
|
Kaksonen, Anna H. |
|
2018 |
127-128 |
C |
p. 7-25 |
artikel |
1716 |
Recent progress in impurity removal during rare earth element processing: A review
|
Judge, W.D. |
|
|
127-128 |
C |
p. |
artikel |
1717 |
Reclaiming rare earth elements from end-of-life products: A review of the perspectives for urban mining using hydrometallurgical unit operations
|
Tunsu, Cristian |
|
2015 |
127-128 |
C |
p. 239-258 20 p. |
artikel |
1718 |
Recovering rare earth elements from phosphogypsum using a resin-in-leach process: Selection of resin, leaching agent, and eluent
|
Virolainen, Sami |
|
2019 |
127-128 |
C |
p. |
artikel |
1719 |
Recovery and separation of gallium(III) and germanium(IV) from zinc refinery residues : Part II: Solvent extraction
|
Liu, Fupeng |
|
2017 |
127-128 |
C |
p. 149-156 8 p. |
artikel |
1720 |
Recovery and separation of gallium(III) and germanium(IV) from zinc refinery residues: Part I: Leaching and iron(III) removal
|
Liu, Fupeng |
|
2017 |
127-128 |
C |
p. 564-570 |
artikel |
1721 |
Recovery and separation of Sc, Zr and Ti from acidic sulfate solutions for high purity scandium oxide production: Laboratory and pilot study
|
Smyshlyaev, Denis |
|
|
127-128 |
C |
p. |
artikel |
1722 |
Recovery and separation of silver and mercury from hazardous zinc refinery residues produced by zinc oxygen pressure leaching
|
Liu, Fupeng |
|
2019 |
127-128 |
C |
p. 38-45 |
artikel |
1723 |
Recovery and separation of W and Mo from high-molybdenum synthetic scheelite in HCl solutions containing H2O2
|
Zhang, Wenjuan |
|
2015 |
127-128 |
C |
p. 1-5 5 p. |
artikel |
1724 |
Recovery of a composite powder from NdFeB slurry by co-precipitation
|
Lai, Weihong |
|
2014 |
127-128 |
C |
p. 27-33 7 p. |
artikel |
1725 |
Recovery of aluminium and lithium from gypsum residue obtained in the process of lithium extraction from lepidolite
|
Kuang, Ge |
|
2015 |
127-128 |
C |
p. 214-218 5 p. |
artikel |
1726 |
Recovery of arsenic oxide, harmless gypsum residue and clean water by lime neutralization and precipitation
|
Xu, Lei |
|
|
127-128 |
C |
p. |
artikel |
1727 |
Recovery of Au(CN)2
− with magnetic reduced graphene oxide hydrogel in aqueous leach solution
|
Sun, Kaige |
|
2018 |
127-128 |
C |
p. 208-215 |
artikel |
1728 |
Recovery of Au(III) from leach solutions using thiourea functionalized zeolitic imidazolate frameworks (TU*ZIF-8)
|
Wang, Zhike |
|
2018 |
127-128 |
C |
p. 262-270 |
artikel |
1729 |
Recovery of bi-metallic oxalates from low grade Mn ore for energy storage application
|
Pattnaik, Sushree |
|
2019 |
127-128 |
C |
p. |
artikel |
1730 |
Recovery of bismuth and other metals from blast furnace dust by leaching with oxalic acid-based deep eutectic solvent and precipitation
|
Qiao, Zhiqiang |
|
|
127-128 |
C |
p. |
artikel |
1731 |
Recovery of boric acid from salt lake brines by solvent extraction with 2-butyl-1-n-octanol
|
Peng, Xiaowu |
|
2018 |
127-128 |
C |
p. 161-167 |
artikel |
1732 |
Recovery of both magnesium and lithium from high Mg/Li ratio brines using a novel process
|
Wang, Huaiyou |
|
2018 |
127-128 |
C |
p. 102-108 |
artikel |
1733 |
Recovery of cadmium, lead and nickel from leach solutions of waste electrical and electronic equipment using activated carbon modified with 1-(2-pyridylazo)-2-naphthol
|
Iqbal, Aamir |
|
|
127-128 |
C |
p. |
artikel |
1734 |
Recovery of cerium(IV) in acidic nitrate solutions by solvent extraction with a novel extractant tris(2-ethylhexyl)phosphine oxide
|
Li, Kai |
|
2019 |
127-128 |
C |
p. |
artikel |
1735 |
Recovery of chromium from vanadium precipitated solution by precipitation with lead salt and leaching with sodium carbonate
|
Yang, Minge |
|
|
127-128 |
C |
p. |
artikel |
1736 |
Recovery of chromium(VI) in wastewater using solvent extraction with amide
|
Ying, Ziwen |
|
|
127-128 |
C |
p. |
artikel |
1737 |
Recovery of cobalt and manganese from nickel laterite leach solutions containing chloride by solvent extraction using Cyphos IL 101
|
Zhu, Zhaowu |
|
2017 |
127-128 |
C |
p. 213-218 |
artikel |
1738 |
Recovery of cobalt from spent lithium ion batteries utilizing surface modified graphene oxide
|
Iqbal, Aamir |
|
|
127-128 |
C |
p. |
artikel |
1739 |
Recovery of cobalt, lithium, and manganese from the cathode active materials of spent lithium-ion batteries in a bio-electro-hydrometallurgical process
|
Huang, Tao |
|
2019 |
127-128 |
C |
p. 101-111 |
artikel |
1740 |
Recovery of cobalt metal powder from el BOLEO plant using reduction processes
|
Park, Jong Sun |
|
2017 |
127-128 |
C |
p. 227-233 7 p. |
artikel |
1741 |
Recovery of Co metal and Electrolytic Manganese Dioxide (EMD) from Co–Mn sludge
|
Biswal, A. |
|
2015 |
127-128 |
C |
p. 159-168 10 p. |
artikel |
1742 |
Recovery of Co, Ni, and Li from solutions by solvent extraction with β-diketone system
|
Zhang, Licheng |
|
|
127-128 |
C |
p. |
artikel |
1743 |
Recovery of copper and the deportment of other base metals from alkaline glycine leachates derived from waste printed circuit boards (WPCBs)
|
Li, Huan |
|
|
127-128 |
C |
p. |
artikel |
1744 |
Recovery of copper from WPCBs using slurry electrolysis with ionic liquid [BSO3HPy]∙HSO4
|
Zhang, Yugai |
|
2018 |
127-128 |
C |
p. 150-154 |
artikel |
1745 |
Recovery of copper salts by fluidized-bed homogeneous granulation process: High selectivity on malachite crystallization
|
Lertratwattana, Karnsinee |
|
2019 |
127-128 |
C |
p. 66-72 |
artikel |
1746 |
Recovery of Cr from vanadium-containing chromate solution with copper salt precipitation after V separation
|
Meng, Yuqi |
|
2019 |
127-128 |
C |
p. 157-160 |
artikel |
1747 |
Recovery of critical and value metals from mobile electronics enabled by electrochemical processing
|
Lister, Tedd E. |
|
2014 |
127-128 |
C |
p. 228-237 10 p. |
artikel |
1748 |
Recovery of dimethylglyoxime (DMG) from Ni-DMG complexes
|
Rath, Meenakshi |
|
2018 |
127-128 |
C |
p. 229-234 |
artikel |
1749 |
Recovery of Fe, Mn, Ni and Co in sulfuric acid leaching liquor of spent lithium ion batteries for synthesis of lithium ion-sieve and NixCoyMn1-x-y(OH)2
|
Li, Jishen |
|
2019 |
127-128 |
C |
p. |
artikel |
1750 |
Recovery of fine particles of activated carbon with gold by the electrocoagulation process using a Taguchi experimental design
|
Martínez-Peñuñuri, R. |
|
|
127-128 |
C |
p. |
artikel |
1751 |
Recovery of Ga(III) from chloride solutions by solvent extraction with Cextrant 230
|
Zhou, Xueke |
|
2019 |
127-128 |
C |
p. 76-81 |
artikel |
1752 |
Recovery of gallium from Bayer liquor: A review
|
Zhao, Zhuo |
|
2012 |
127-128 |
C |
p. 115-124 10 p. |
artikel |
1753 |
Recovery of gallium from Bayer red mud through acidic-leaching-ion-exchange process under normal atmospheric pressure
|
Lu, Fanghai |
|
2018 |
127-128 |
C |
p. 124-132 |
artikel |
1754 |
Recovery of gallium from leach solutions of zinc refinery residues by stepwise solvent extraction with N235 and Cyanex 272
|
Zhang, Kuifang |
|
|
127-128 |
C |
p. |
artikel |
1755 |
Recovery of gallium from strong acidic sulphate leach solutions of zinc refinery residues using a novel phosphate ester extractant
|
Zhang, Kuifang |
|
2019 |
127-128 |
C |
p. 250-256 |
artikel |
1756 |
Recovery of germanium and indium from leaching solution of germanium dross using solvent extraction with TOA, TBP and D2EHPA
|
Drzazga, Michał |
|
|
127-128 |
C |
p. |
artikel |
1757 |
Recovery of germanium from leach solutions of fly ash using solvent extraction with various extractants
|
Kamran Haghighi, Hossein |
|
2018 |
127-128 |
C |
p. 164-169 |
artikel |
1758 |
Recovery of germanium from synthetic leach solution of zinc refinery residues by synergistic solvent extraction using LIX 63 and Ionquest 801
|
Nusen, Sankum |
|
2015 |
127-128 |
C |
p. 122-132 11 p. |
artikel |
1759 |
Recovery of gold and silver from spent mobile phones by means of acidothiourea leaching followed by adsorption using biosorbent prepared from persimmon tannin
|
Gurung, Manju |
|
2013 |
127-128 |
C |
p. 84-93 10 p. |
artikel |
1760 |
Recovery of gold from hydrochloric medium by deep eutectic solvents based on quaternary ammonium salts
|
Geng, Yuqi |
|
2019 |
127-128 |
C |
p. 264-271 |
artikel |
1761 |
Recovery of gold from secondary sources—A review
|
Syed, S. |
|
2012 |
127-128 |
C |
p. 30-51 22 p. |
artikel |
1762 |
Recovery of gold from waste solutions using a new RFB resin
|
Xiang, Yong |
|
|
127-128 |
C |
p. |
artikel |
1763 |
Recovery of gold(III) and iridium(IV) using magnetic layered double hydroxide (Fe3O4/Mg-Al-LDH) nanocomposite: Equilibrium studies and application to real samples
|
Biata, N. Raphael |
|
|
127-128 |
C |
p. |
artikel |
1764 |
Recovery of Hf and Zr from slurry waste of zirconium purification plant using solvent extraction
|
Pandey, G. |
|
2016 |
127-128 |
C |
p. 61-68 8 p. |
artikel |
1765 |
Recovery of high-grade cobalt oxide from zinc plant residue (ZPR) generated at zinc processing plants
|
Kumar, Sunil |
|
|
127-128 |
C |
p. |
artikel |
1766 |
Recovery of indium and gallium from synthetic leach solution of zinc refinery residues using synergistic solvent extraction with LIX 63 and Versatic 10 acid
|
Nusen, Sankum |
|
2016 |
127-128 |
C |
p. 137-146 10 p. |
artikel |
1767 |
Recovery of indium by solvent extraction with crown ether in the presence of KCl and stripping with HCl: A mechanistic study
|
Chen, Gaojie |
|
|
127-128 |
C |
p. |
artikel |
1768 |
Recovery of indium from acidic leach solutions of spent LCD panels using ion exchange
|
Fortin-Lecomte, Charlotte |
|
|
127-128 |
C |
p. |
artikel |
1769 |
Recovery of indium from jarosite residues of zinc refinery by a hydrometallurgical process
|
De-la-Cruz-Moreno, Jorge E. |
|
|
127-128 |
C |
p. |
artikel |
1770 |
Recovery of indium from sulfate solutions with D2EHPA in the presence of organic proton-donor additives
|
Grigorieva, N.A. |
|
|
127-128 |
C |
p. |
artikel |
1771 |
Recovery of iron from red mud by selective leach with oxalic acid
|
Yang, Yang |
|
2015 |
127-128 |
C |
p. 239-245 7 p. |
artikel |
1772 |
Recovery of lanthanum, praseodymium and samarium by adsorption using magnetic nanoparticles functionalized with a phosphonic group
|
Gaete, José |
|
|
127-128 |
C |
p. |
artikel |
1773 |
Recovery of Li from lithium aluminum silicate (LAS) glass-ceramics after heat treatment at 1000 °C and Ca salt-assisted water leaching in two stages before and after calcination at 600 °C
|
Lee, Dongseok |
|
|
127-128 |
C |
p. |
artikel |
1774 |
Recovery of light and heavy rare earth elements from apatite ore using sulphuric acid leaching, solvent extraction and precipitation
|
Battsengel, Ariuntuya |
|
2018 |
127-128 |
C |
p. 100-109 |
artikel |
1775 |
Recovery of light rare earth elements, cerium, lanthanum, and neodymium from alluvial gold mining waste from the Bagre-Nechí mining district in Colombia using acid leaching, oxalate precipitation and calcination
|
Echeverry-Vargas, Luver |
|
|
127-128 |
C |
p. |
artikel |
1776 |
Recovery of lithium carbonate by acid digestion and hydrometallurgical processing from mechanically activated lepidolite
|
Vieceli, Nathália |
|
2018 |
127-128 |
C |
p. 1-10 |
artikel |
1777 |
Recovery of lithium from alkaline brine by solvent extraction with β-diketone
|
Zhang, Licheng |
|
2018 |
127-128 |
C |
p. 35-42 |
artikel |
1778 |
Recovery of lithium from a synthetic solution using spodumene leach residue
|
Han, Guofei |
|
2018 |
127-128 |
C |
p. 109-115 |
artikel |
1779 |
Recovery of lithium from high Mg/Li ratio salt-lake brines using ion-exchange with NaNTf2 and TBP
|
Bai, Ruibing |
|
|
127-128 |
C |
p. |
artikel |
1780 |
Recovery of lithium from leach solutions of battery waste using direct solvent extraction with TBP and FeCl3
|
Wesselborg, Tobias |
|
|
127-128 |
C |
p. |
artikel |
1781 |
Recovery of lithium from LiAlO2 in waste box sagger through sulfation to produce Li2SO4 and sequential wet conversion to Li3PO4, LiCl and Li2CO3
|
Shin, Junho |
|
|
127-128 |
C |
p. |
artikel |
1782 |
Recovery of lithium from mineral resources: State-of-the-art and perspectives – A review
|
Li, Huan |
|
2019 |
127-128 |
C |
p. |
artikel |
1783 |
Recovery of lithium from salt-brine eluates by direct crystallization as lithium sulfate
|
Ooi, Kenta |
|
2017 |
127-128 |
C |
p. 123-130 8 p. |
artikel |
1784 |
Recovery of lithium from salt lake brine of high Mg/Li ratio using Na[FeCl4
∗2TBP] as extractant: Thermodynamics, kinetics and processes
|
Song, Jianfeng |
|
2017 |
127-128 |
C |
p. 63-70 8 p. |
artikel |
1785 |
Recovery of lithium from salt lake brine using a mixed ternary solvent extraction system consisting of TBP, FeCl3 and P507
|
Su, Hui |
|
|
127-128 |
C |
p. |
artikel |
1786 |
Recovery of lithium from spent LiFexMn1-xPO4 batteries through a leaching-precipitation method using H2SO4-H2O2-Na2S2O8
|
Xie, Jing |
|
|
127-128 |
C |
p. |
artikel |
1787 |
Recovery of lithium from Urmia Lake by a nanostructure MnO2 ion sieve
|
Zandevakili, S. |
|
2014 |
127-128 |
C |
p. 148-152 5 p. |
artikel |
1788 |
Recovery of lithium from Uyuni salar brine
|
An, Jeon Woong |
|
2012 |
127-128 |
C |
p. 64-70 7 p. |
artikel |
1789 |
Recovery of lithium in seawater using a titanium intercalated lithium manganese oxide composite
|
Ryu, Taegong |
|
2019 |
127-128 |
C |
p. 22-28 |
artikel |
1790 |
Recovery of magnesium and potassium from biotite by sulfuric acid leaching and alkali precipitation with ammonia
|
Luo, Zheng |
|
2015 |
127-128 |
C |
p. 188-193 6 p. |
artikel |
1791 |
Recovery of magnesium from Uyuni salar brine as high purity magnesium oxalate
|
Tran, Khuyen Thi |
|
2013 |
127-128 |
C |
p. 93-99 7 p. |
artikel |
1792 |
Recovery of magnesium from Uyuni salar brine as hydrated magnesium carbonate
|
Tran, Khuyen Thi |
|
2016 |
127-128 |
C |
p. 106-114 9 p. |
artikel |
1793 |
Recovery of manganese from silicomanganese slag by means of a hydrometallurgical process
|
Ayala, Julia |
|
2015 |
127-128 |
C |
p. 68-73 6 p. |
artikel |
1794 |
Recovery of metal-doped zinc ferrite from zinc-containing electric arc furnace dust: Process development and examination of elemental migration
|
Wang, Hui-gang |
|
2016 |
127-128 |
C |
p. 1-8 8 p. |
artikel |
1795 |
Recovery of metallic Bi from PbBi slag: An integrated process of chloride leaching and electrowinning
|
Che, Jianyong |
|
|
127-128 |
C |
p. |
artikel |
1796 |
Recovery of metals from chloride leach solutions of anode slimes by solvent extraction. Part II: Recovery of silver and copper with LIX 63 and Alamine 336
|
Xing, Wei Dong |
|
2018 |
127-128 |
C |
p. 49-57 |
artikel |
1797 |
Recovery of metals from chloride leach solutions of anode slimes by solvent extraction. Part I: Recovery of gold with Cyanex 272
|
Xing, Wei Dong |
|
2018 |
127-128 |
C |
p. 58-64 |
artikel |
1798 |
Recovery of metals from jarosite of hydrometallurgical nickel production by thermal treatment and leaching
|
Linsong, Wang |
|
|
127-128 |
C |
p. |
artikel |
1799 |
Recovery of metals from spent lithium-ion batteries using organic acids
|
de Oliveira Demarco, Jessica |
|
2019 |
127-128 |
C |
p. |
artikel |
1800 |
Recovery of metals from sulfate leach solutions of spent ternary lithium-ion batteries by precipitation with phosphate and solvent extraction with P507
|
Zhang, Kuifang |
|
|
127-128 |
C |
p. |
artikel |
1801 |
Recovery of metal values from waste printed circuit boards using an alkali fusion–leaching–separation process
|
Guo, Xueyi |
|
2015 |
127-128 |
C |
p. 199-205 7 p. |
artikel |
1802 |
Recovery of Mo and Ni from spent acrylonitrile catalysts using an oxidation leaching–chemical precipitation technique
|
Liu, Jian |
|
2016 |
127-128 |
C |
p. 64-70 |
artikel |
1803 |
Recovery of molybdenum and rhenium in scrub liquors of fumes and dusts from roasting molybdenite concentrates
|
Salehi, Hossein |
|
2019 |
127-128 |
C |
p. 142-148 |
artikel |
1804 |
Recovery of molybdenum and vanadium with high purity from sulfuric acid leach solution of spent hydrodesulfurization catalysts by ion exchange
|
Nguyen, Thi Hong |
|
2014 |
127-128 |
C |
p. 142-147 6 p. |
artikel |
1805 |
Recovery of molybdenum from alkaline leach solution of spent hydrotreating catalyst by solvent extraction using methyl tricaprylammonium hydroxide
|
Imam, D.M. |
|
2018 |
127-128 |
C |
p. 172-179 |
artikel |
1806 |
Recovery of molybdenum from leach solution using polyelectrolyte extraction
|
Shalchian, Hossein |
|
2019 |
127-128 |
C |
p. |
artikel |
1807 |
Recovery of molybdenum from uranium bearing solution by solvent extraction with 5-Nonylsalicylaldoxime
|
Lasheen, T.A. |
|
2014 |
127-128 |
C |
p. 175-182 8 p. |
artikel |
1808 |
Recovery of Nd and Pr from NdFeB magnet leachates with bi-functional ionic liquids based on Aliquat 336 and Cyanex 272
|
Padhan, E. |
|
2017 |
127-128 |
C |
p. 134-140 7 p. |
artikel |
1809 |
Recovery of neodymium and dysprosium from NdFeB magnet swarf
|
Padhan, E. |
|
2017 |
127-128 |
C |
p. 210-215 6 p. |
artikel |
1810 |
Recovery of nickel and molybdate from ammoniacal leach liquors of spent HDS catalysts using chelating ion exchange resin
|
Padh, Bharat |
|
2019 |
127-128 |
C |
p. 88-94 |
artikel |
1811 |
Recovery of nickel, cobalt and rare-earth elements from spent nickel–metal-hydride battery: Laboratory tests and pilot trials
|
Takano, Masatoshi |
|
|
127-128 |
C |
p. |
artikel |
1812 |
Recovery of nickel oxide nanorods from a laterite-originated intermediate product by ammonia leach-deammoniation method
|
Asadrokht, Mohammad |
|
|
127-128 |
C |
p. |
artikel |
1813 |
Recovery of nitrates from leaching solutions using seawater
|
Torres, M.A. |
|
2013 |
127-128 |
C |
p. 100-105 6 p. |
artikel |
1814 |
Recovery of nitric and acetic acids from etching waste solutions using a synergistic system consisting of N235 and TRPO in cyclohexane
|
Wang, Ye |
|
2019 |
127-128 |
C |
p. 23-29 |
artikel |
1815 |
Recovery of Noble metal elements from effluents of the semiconductor industry as nanoparticles, by dielectric barrier discharge (DBD) plasma treatment
|
Sauvageau, Jean-François |
|
|
127-128 |
C |
p. |
artikel |
1816 |
Recovery of noble metals from refractory sulfide black-shale ores
|
Kononova, O.N. |
|
2014 |
127-128 |
C |
p. 156-162 7 p. |
artikel |
1817 |
Recovery of palladium from acidic nitrate media with triazole type extractants in ionic liquid
|
Li, Shun |
|
2019 |
127-128 |
C |
p. |
artikel |
1818 |
Recovery of palladium from a spent industrial catalyst through leaching and solvent extraction
|
Paiva, Ana Paula |
|
2017 |
127-128 |
C |
p. 394-401 8 p. |
artikel |
1819 |
Recovery of palladium(II) from strong nitric acid solutions relevant to high-level liquid waste of PUREX process by solvent extraction with pyrazole-pyridine-based amide ligands
|
Song, Lianjun |
|
|
127-128 |
C |
p. |
artikel |
1820 |
Recovery of palladium, platinum, rhodium and ruthenium from catalyst materials using microwave-assisted leaching and cloud point extraction
|
Suoranta, Terhi |
|
2015 |
127-128 |
C |
p. 56-62 7 p. |
artikel |
1821 |
Recovery of Pd(II) and Pt(IV) from leach liquors of automotive catalysts with calixarene-based di-n-alkylamino extractants in saturated hydrocarbon diluents
|
Yamada, Manabu |
|
2019 |
127-128 |
C |
p. 103-108 |
artikel |
1822 |
Recovery of Pd(II) by solvent extraction with a dithiophenol-based extractant from the undiluted leachate of spent automotive catalysts followed by water scrubbing and thiourea stripping
|
Yamada, Manabu |
|
|
127-128 |
C |
p. |
artikel |
1823 |
Recovery of Pd(II) in chloride solutions by solvent extraction with new vinyl sulfide ploymer extractants
|
Shi, Wei |
|
|
127-128 |
C |
p. |
artikel |
1824 |
Recovery of platinum and rhenium using selective precipitation induced by two-stage photochemical treatment
|
Hori, Hisao |
|
|
127-128 |
C |
p. |
artikel |
1825 |
Recovery of platinum group metal value via potassium iodide leaching
|
Patel, Anant |
|
2015 |
127-128 |
C |
p. 219-225 7 p. |
artikel |
1826 |
Recovery of platinum, palladium and rhodium from acidic chloride leach solution using ion exchange resins
|
Nikoloski, Aleksandar N. |
|
2015 |
127-128 |
C |
p. 20-32 13 p. |
artikel |
1827 |
Recovery of potassium hydroxide from strong potassium aluminate solutions using solvent extraction with alkyl phenols
|
Xue, Jin |
|
2019 |
127-128 |
C |
p. 183-191 |
artikel |
1828 |
Recovery of Pt, Pd, and Rh from spent automotive catalysts through combined chloride leaching and ion exchange: A review
|
Hosseinzadeh, Mostafa |
|
|
127-128 |
C |
p. |
artikel |
1829 |
Recovery of pure metal sulfate solutions from a synthetic sulfuric acid leachate of base-rare earth metals representing spent Ni-MH batteries through selective precipitation, stepwise ionic-liquid/solvent extraction and stripping
|
Yun, Seol Ho |
|
|
127-128 |
C |
p. |
artikel |
1830 |
Recovery of rare earth elements adsorbed on clay minerals: I. Desorption mechanism
|
Moldoveanu, Georgiana A. |
|
2012 |
127-128 |
C |
p. 71-78 8 p. |
artikel |
1831 |
Recovery of rare earth elements adsorbed on clay minerals: II. Leaching with ammonium sulfate
|
Moldoveanu, Georgiana A. |
|
2013 |
127-128 |
C |
p. 158-166 9 p. |
artikel |
1832 |
Recovery of rare earth elements from coal flyash using deep eutectic solvents as leachants and precipitating as oxalate or fluoride
|
Karan, Ram |
|
|
127-128 |
C |
p. |
artikel |
1833 |
Recovery of rare earth elements from coal fly ash using TEHDGA impregnated resin
|
Mondal, S. |
|
2019 |
127-128 |
C |
p. 93-101 |
artikel |
1834 |
Recovery of rare earth elements from NdFeB magnet by mono- and bifunctional mesoporous silica: Waste recycling strategies and perspectives
|
Dudarko, Oksana |
|
|
127-128 |
C |
p. |
artikel |
1835 |
Recovery of rare earth elements from nitrophosphoric acid solutions
|
Alemrajabi, Mahmood |
|
2017 |
127-128 |
C |
p. 253-262 |
artikel |
1836 |
Recovery of rare earth elements from phosphogypsum waste in resin-in-leach process by eluting with biodegradable complexing agents
|
Kurkinen, Santeri |
|
|
127-128 |
C |
p. |
artikel |
1837 |
Recovery of rare earth elements from spent fluid catalytic cracking catalysts using leaching and solvent extraction techniques
|
Zhao, Zhexuan |
|
2017 |
127-128 |
C |
p. 183-188 6 p. |
artikel |
1838 |
Recovery of rare earth elements from uranium leach liquors by adsorption with diglycolamic acid ligands and ionic liquids
|
Rychkov, Vladimir |
|
|
127-128 |
C |
p. |
artikel |
1839 |
Recovery of rare earth elements from waste streams using membrane processes: An overview
|
Elbashier, Elkhansa |
|
|
127-128 |
C |
p. |
artikel |
1840 |
Recovery of rare earth from the ion-adsorption type rare earths ore: II. Compound leaching
|
Yanfei, Xiao |
|
2016 |
127-128 |
C |
p. 83-90 8 p. |
artikel |
1841 |
Recovery of rare earth metals as critical raw materials from phosphorus slag of long-term storage
|
Abisheva, Zinesh Sadyrovna |
|
2017 |
127-128 |
C |
p. 271-282 12 p. |
artikel |
1842 |
Recovery of rare earths from nitric acid leach solutions of phosphate ores using solvent extraction with a new amide extractant (TODGA)
|
Xu, Dongdong |
|
2018 |
127-128 |
C |
p. 132-138 |
artikel |
1843 |
Recovery of rare earths from waste cathode ray tube (CRT) phosphor powder by selective sulfation roasting and water leaching
|
Önal, Mehmet Ali Recai |
|
2019 |
127-128 |
C |
p. 60-70 |
artikel |
1844 |
Recovery of rare earths from weathered crust elution-deposited rare earth ore without ammonia-nitrogen pollution: I. leaching with magnesium sulfate
|
Yanfei, Xiao |
|
2015 |
127-128 |
C |
p. 58-65 8 p. |
artikel |
1845 |
Recovery of rare earths in different media with novel dicarboxylate based ionic liquid and application to recycle SmCo magnets
|
Deng, Yu |
|
|
127-128 |
C |
p. |
artikel |
1846 |
Recovery of REEs from leaching liquor of ion-adsorbed-type rare earths ores using ionic liquid based on cooking oil
|
Li, Fujian |
|
|
127-128 |
C |
p. |
artikel |
1847 |
Recovery of REEs, Zr(+Hf), Mn and Nb by H2SO4 leaching of eudialyte concentrate
|
Balinski, Adam |
|
2019 |
127-128 |
C |
p. 176-186 |
artikel |
1848 |
Recovery of Re(VII) from aqueous solutions with coated impregnated resins containing ionic liquid Aliquat 336
|
Guo, Xueyi |
|
2019 |
127-128 |
C |
p. |
artikel |
1849 |
Recovery of rhenium and molybdenum from a roaster fume scrubbing liquor by adsorption using activated carbon
|
Seo, Sangyun |
|
|
127-128 |
C |
p. 145-150 |
artikel |
1850 |
Recovery of rhenium from a molybdenite roaster fume as high purity ammonium perrhenate
|
Kim, Hyun Soo |
|
2015 |
127-128 |
C |
p. 158-164 7 p. |
artikel |
1851 |
Recovery of rhenium from aqueous mixed metal solutions by selective precipitation: A photochemical approach
|
Hori, Hisao |
|
2019 |
127-128 |
C |
p. 151-158 |
artikel |
1852 |
Recovery of rhenium from copper leach solution by ion exchange
|
Nebeker, Neil |
|
2012 |
127-128 |
C |
p. 64-68 5 p. |
artikel |
1853 |
Recovery of rhenium from copper leach solutions using ion exchange with weak base resins
|
Zhang, Bo |
|
2017 |
127-128 |
C |
p. 50-56 7 p. |
artikel |
1854 |
Recovery of rhenium(VII) from synthetic leaching solutions of uranium ore using ionic liquid modified cellulose microsphere adsorbents
|
Dong, Zhen |
|
|
127-128 |
C |
p. |
artikel |
1855 |
Recovery of rubidium and potassium alums from lithium-bearing minerals
|
Jandová, J. |
|
2012 |
127-128 |
C |
p. 73-76 4 p. |
artikel |
1856 |
Recovery of ruthenium by solvent extraction and direct electrodeposition using ionic liquid solution
|
Song, Yueqi |
|
2018 |
127-128 |
C |
p. 164-168 |
artikel |
1857 |
Recovery of samarium(III) and cobalt(II) in synthetic nitric acid solutions using carboxyl functionalized ionic liquids and application to recycling SmCo permanent magnets
|
Liang, Xiayu |
|
|
127-128 |
C |
p. |
artikel |
1858 |
Recovery of scandium from acidic waste solutions by means of polymer inclusion membranes
|
Hedwig, Sebastian |
|
|
127-128 |
C |
p. |
artikel |
1859 |
Recovery of scandium from leaching solutions of tungsten residue using solvent extraction with Cyanex 572
|
Nie, Huaping |
|
2018 |
127-128 |
C |
p. 117-123 |
artikel |
1860 |
Recovery of scandium from red mud by leaching with titanium white waste acid and solvent extraction with P204
|
Zhou, Jie |
|
|
127-128 |
C |
p. |
artikel |
1861 |
Recovery of scandium from spent sulfuric acid solution in titanium dioxide production using synergistic solvent extraction with D2EHPA and primary amine N1923
|
Zou, Dan |
|
|
127-128 |
C |
p. |
artikel |
1862 |
Recovery of scandium from sulfuric acid solution with a macro porous TRPO/SiO2-P adsorbent
|
Yu, Qing |
|
2018 |
127-128 |
C |
p. 74-81 |
artikel |
1863 |
Recovery of scandium from white waste acid generated from the titanium sulphate process using solvent extraction with TRPO
|
Zhou, Jie |
|
|
127-128 |
C |
p. |
artikel |
1864 |
Recovery of scattered and precious metals from copper anode slime by hydrometallurgy: A review
|
Liu, Gongqi |
|
|
127-128 |
C |
p. |
artikel |
1865 |
Recovery of silver from cyanide leach solutions by precipitation using Trimercapto-s-triazine (TMT)
|
Yazici, E.Y. |
|
2017 |
127-128 |
C |
p. 175-183 9 p. |
artikel |
1866 |
Recovery of silver from nickel electrolyte using corn stalk-based sulfur-bearing adsorbent
|
Li, Xinyu |
|
2018 |
127-128 |
C |
p. 192-200 |
artikel |
1867 |
Recovery of silver from X-ray film processing effluents by hydrogen peroxide treatment
|
Bas, A.D. |
|
2012 |
127-128 |
C |
p. 22-27 6 p. |
artikel |
1868 |
Recovery of soluble manganese from electrolyte manganese residue using a combination of ammonia and CO2
|
Wang, Nanfang |
|
2016 |
127-128 |
C |
p. 288-294 |
artikel |
1869 |
Recovery of sulfuric acid from a stone coal acid leaching solution by diffusion dialysis
|
Wang, Kui |
|
2017 |
127-128 |
C |
p. 9-14 6 p. |
artikel |
1870 |
Recovery of sulphuric acid from waste and process solutions using solvent extraction
|
Kesieme, Uchenna K. |
|
2013 |
127-128 |
C |
p. 14-20 7 p. |
artikel |
1871 |
Recovery of surface-plated metals from lead frame scrap using selective leaching and solvent extraction
|
Kim, Jonghyun |
|
|
127-128 |
C |
p. |
artikel |
1872 |
Recovery of tantalum from synthetic sulfuric leach solutions by solvent extraction with phosphonate functionalized ionic liquids
|
Micheau, Cyril |
|
2019 |
127-128 |
C |
p. |
artikel |
1873 |
Recovery of tellurium from aqueous solutions by adsorption with magnetic nanoscale zero-valent iron (NZVFe)
|
Yu, Hanqiang |
|
2018 |
127-128 |
C |
p. 1-8 |
artikel |
1874 |
Recovery of tellurium from high tellurium-bearing materials by alkaline pressure leaching process: Thermodynamic evaluation and experimental study
|
Fan, Youqi |
|
2013 |
127-128 |
C |
p. 95-99 5 p. |
artikel |
1875 |
Recovery of tellurium from high tellurium-bearing materials by alkaline sulfide leaching followed by sodium sulfite precipitation
|
Guo, Xueyi |
|
2017 |
127-128 |
C |
p. 355-361 7 p. |
artikel |
1876 |
Recovery of Th(IV) from acid leaching solutions of bastnaesite at low concentrations
|
Gui, Wenjun |
|
2014 |
127-128 |
C |
p. 157-163 7 p. |
artikel |
1877 |
Recovery of Th(IV) from leaching solutions of rare earth residues using a synergistic solvent extraction system consisting of Cyanex 572 and n-octyl diphenyl phosphate (ODP)
|
Zhou, Haiyue |
|
2019 |
127-128 |
C |
p. 186-192 |
artikel |
1878 |
Recovery of Ti and Li from spent lithium titanate cathodes by a hydrometallurgical process
|
Tang, Wenjiang |
|
2014 |
127-128 |
C |
p. 210-216 7 p. |
artikel |
1879 |
Recovery of TiO2-enriched material from vanadium titano-magnetite concentrates by partial carbon reduction and mild acid leaching
|
Safdar, Faiza |
|
|
127-128 |
C |
p. |
artikel |
1880 |
Recovery of transition metals (Ni, Co, and Mn) and Li from the sulfate leach solutions of spent ternary lithium-ion batteries by stepwise solvent extraction and precipitation
|
Zhang, Kuifang |
|
|
127-128 |
C |
p. |
artikel |
1881 |
Recovery of tungsten by liquid–liquid extraction from a wolframite concentrate after fusion with sodium hydroxide
|
Paulino, Jéssica Frontino |
|
2012 |
127-128 |
C |
p. 121-124 4 p. |
artikel |
1882 |
Recovery of tungsten compounds from spent tungstophosphate catalyst using leaching, solvent extraction with phosphonium-based ionic liquids and precipitation
|
Igosawa, Tatsuki |
|
|
127-128 |
C |
p. |
artikel |
1883 |
Recovery of tungsten from acidic solutions rich in calcium and iron
|
Liu, Xuheng |
|
|
127-128 |
C |
p. |
artikel |
1884 |
Recovery of ultrafine copper particles from metal components of waste printed circuit boards
|
Yang, Jian-guang |
|
2012 |
127-128 |
C |
p. 1-6 6 p. |
artikel |
1885 |
Recovery of ultra-trace palladium using chitosan and its sulphur-containing derivative in HCl medium
|
Xie, Qiaoling |
|
2018 |
127-128 |
C |
p. 188-194 |
artikel |
1886 |
Recovery of uranium from carbonaceous radioactive waste of the UF6 production line in a uranium conversion plant: Laboratory and pilot plant studies
|
Sadeghi, M.H. |
|
|
127-128 |
C |
p. |
artikel |
1887 |
Recovery of uranium from carbonate solutions using Lewatit TP 107 resin
|
Quinn, James E. |
|
|
127-128 |
C |
p. |
artikel |
1888 |
Recovery of uranium from conversion production sludge by leaching with nitric acid and subsequent ion-exchange concentration
|
Skripchenko, Sergey Yu |
|
|
127-128 |
C |
p. |
artikel |
1889 |
Recovery of uranium from phosphate rock with EDTA-mediated dissolution and cation exchange
|
Paschalidou, Polyxeni |
|
2019 |
127-128 |
C |
p. |
artikel |
1890 |
Recovery of uranium, thorium and rare earth from industrial residues
|
Amaral, Janúbia C.B.S. |
|
2018 |
127-128 |
C |
p. 148-155 |
artikel |
1891 |
Recovery of uranium (VI) from concentrated phosphoric acid by mixtures of new bis(1,3- dialkyloxypropan-2-yl) phosphoric acids and tri-n-octylphosphine oxide
|
Beltrami, Denis |
|
2013 |
127-128 |
C |
p. 28-33 6 p. |
artikel |
1892 |
Recovery of uranium (VI) from concentrated phosphoric acid using bifunctional reagents
|
Leydier, Antoine |
|
2017 |
127-128 |
C |
p. 262-266 5 p. |
artikel |
1893 |
Recovery of valuable metal ions from the spent lithium-ion battery using aqueous mixture of mild organic acids as alternative to mineral acids
|
Nayaka, G.P. |
|
2015 |
127-128 |
C |
p. 73-77 5 p. |
artikel |
1894 |
Recovery of valuable metals and regeneration of acid from the leaching solution of spent HDS catalysts by solvent extraction
|
Banda, Raju |
|
2013 |
127-128 |
C |
p. 161-167 7 p. |
artikel |
1895 |
Recovery of valuable metals from argon oxygen decarburization (AOD) dusts by leaching, filtration and solvent extraction
|
Virolainen, Sami |
|
2013 |
127-128 |
C |
p. 181-189 9 p. |
artikel |
1896 |
Recovery of valuable metals from manganese purification sludge (SPS) containing Mn-Ni-Co sulfide and preparation of battery-grade Ni-Co-Mn sulfate solution
|
Yue, Leiting |
|
|
127-128 |
C |
p. |
artikel |
1897 |
Recovery of valuable metals from molybdenum-removal sludge by reverse sulfurization leaching
|
Lipan, Jia |
|
|
127-128 |
C |
p. |
artikel |
1898 |
Recovery of valuable metals from spent lithium-ion batteries based on a green and efficient leaching system of dimethyl-β-propionic acid thiophene (DMPT)
|
Shi, Huiying |
|
|
127-128 |
C |
p. |
artikel |
1899 |
Recovery of valuable metals from spent ternary Li-ion batteries: Dissolution with amidosulfonic acid and d-glucose
|
Wang, Yun-Yan |
|
2019 |
127-128 |
C |
p. |
artikel |
1900 |
Recovery of vanadium from acid leaching solutions of spent oil hydrotreating catalyst using solvent extraction with D2EHPA (P204)
|
Wang, Hongjun |
|
|
127-128 |
C |
p. |
artikel |
1901 |
Recovery of vanadium from direct acid leaching solutions of weathered crust vanadium‐titanium magnetite via solvent extraction with N235
|
Li, Wenbo |
|
|
127-128 |
C |
p. |
artikel |
1902 |
Recovery of vanadium from leach solutions of vanadium slag using solvent extraction with N235
|
Qin, Zhifeng |
|
|
127-128 |
C |
p. |
artikel |
1903 |
Recovery of vanadium from stone coal acid leaching solution by coprecipitation, alkaline roasting and water leaching
|
Ye, Puhong |
|
2012 |
127-128 |
C |
p. 108-115 8 p. |
artikel |
1904 |
Recovery of vanadium from vanadium slag with high phosphorus content via recyclable microemulsion extraction
|
Guo, Yun |
|
|
127-128 |
C |
p. |
artikel |
1905 |
Recovery of vanadium, potassium and iron from a spent vanadium catalyst by oxalic acid solution leaching, precipitation and ion exchange processes
|
Mazurek, Krzysztof |
|
2013 |
127-128 |
C |
p. 26-31 6 p. |
artikel |
1906 |
Recovery of vanadium using an aqueous two-phase system consisting of poly (ethylene glycol) 2000 and sodium sulfate
|
Sun, Tingting |
|
2019 |
127-128 |
C |
p. |
artikel |
1907 |
Recovery of vanadium(V) from synthetic and real leach solutions of spent catalyst by solvent extraction using Cyphos IL 104
|
Mahandra, Harshit |
|
|
127-128 |
C |
p. |
artikel |
1908 |
Recovery of yttrium and lanthanides from sulfate solutions with high concentration of iron and low rare earth content
|
Beltrami, Denis |
|
2015 |
127-128 |
C |
p. 356-362 7 p. |
artikel |
1909 |
Recovery of yttrium and neodymium from copper pregnant leach solutions by solvent extraction
|
Hiskey, J. Brent |
|
2018 |
127-128 |
C |
p. 21-26 |
artikel |
1910 |
Recovery of zinc and the regeneration of the complexation agent from the NH4Cl-NH3-NTA system
|
Rao, Shuai |
|
2017 |
127-128 |
C |
p. 508-514 |
artikel |
1911 |
Recovery of zinc from a low-grade zinc oxide ore with high silicon by sulfuric acid curing and water leaching
|
Zhang, Yadong |
|
2016 |
127-128 |
C |
p. 16-21 6 p. |
artikel |
1912 |
Recovery of zinc from industrial waste pickling liquor
|
Pathak, Abhishek |
|
2016 |
127-128 |
C |
p. 161-166 6 p. |
artikel |
1913 |
Recovery of zinc from zinc ash by leaching in sulphuric acid and electrowinning
|
Rudnik, Ewa |
|
2019 |
127-128 |
C |
p. 256-263 |
artikel |
1914 |
Recovery of Zr, Hf, Nb from eudialyte residue by sulfuric acid dry digestion and water leaching with H2O2 as a promoter
|
Ma, Yiqian |
|
2018 |
127-128 |
C |
p. 206-214 |
artikel |
1915 |
Recovery process of rare earths, Al, U, and Th from ionic rare earth purification residue using sequential alkaline leaching, acid leaching solvent extraction and stripping
|
Lan, Qiaofa |
|
|
127-128 |
C |
p. |
artikel |
1916 |
Recycling of a secondary lead smelting matte by selective citrate leaching of valuable metals and simultaneous recovery of hematite as a secondary resource
|
Kim, Eunyoung |
|
2017 |
127-128 |
C |
p. 290-296 |
artikel |
1917 |
Recycling of black dross containing rare earths originating from melting and recycling of magnesium alloys
|
Scharf, Christiane |
|
2015 |
127-128 |
C |
p. 140-148 9 p. |
artikel |
1918 |
Recycling of copper telluride from copper anode slime processing: Toward efficient recovery of tellurium and copper
|
Xu, Liang |
|
|
127-128 |
C |
p. |
artikel |
1919 |
Recycling of NdFeB magnets: Model supported iron minimization via in-situ hydrolysis during leaching and hematite precipitation in an autoclave
|
Emil-Kaya, Elif |
|
|
127-128 |
C |
p. |
artikel |
1920 |
Recycling of NdFeB magnets using nitration, calcination and water leaching for REE recovery
|
Önal, Mehmet Ali Recai |
|
2017 |
127-128 |
C |
p. 115-123 9 p. |
artikel |
1921 |
Redox assisted solvent extraction to enable highly efficient separation of cerium from other lanthanides: Experimental studies and DFT calculations
|
Hao, Huaixin |
|
|
127-128 |
C |
p. |
artikel |
1922 |
Redox potential-dependent chalcopyrite leaching in acidic ferric chloride solutions: Leaching experiments
|
Phuong Thao, Nguyen Thi |
|
|
127-128 |
C |
p. |
artikel |
1923 |
Redox processes during cobalt extraction with bis(2,4,4-trimethylpentyl)dithiophosphinic acid
|
Fleitlikh, I.Yu. |
|
|
127-128 |
C |
p. 43-49 |
artikel |
1924 |
Reducing agents in the leaching of manganese ores: A comprehensive review
|
Sinha, Manish Kumar |
|
2019 |
127-128 |
C |
p. 168-186 |
artikel |
1925 |
Reducing silica in zirconium leachate from washed and dried frit powder: Role of cold and concentrated nitric acid and avoidance of crud formation
|
Tomar, Sandeep Singh |
|
|
127-128 |
C |
p. |
artikel |
1926 |
Reducing the energy consumption and cell sludge of the zinc electrowinning process by using a pyramid-shaped 3D-Pb anode
|
Zhong, Xiaocong |
|
2019 |
127-128 |
C |
p. |
artikel |
1927 |
Reduction leaching of rare earth from ion-adsorption type rare earths ore: II. Compound leaching
|
Yanfei, Xiao |
|
2017 |
127-128 |
C |
p. 1-8 8 p. |
artikel |
1928 |
Reduction of alkalinity in bauxite residue during Bayer digestion in high-ferrite diasporic bauxite
|
Pan, Xiaolin |
|
2015 |
127-128 |
C |
p. 98-106 9 p. |
artikel |
1929 |
Reduction roasting and bioleaching of a limonite ore
|
Oliveira, Victor de Alvarenga |
|
|
127-128 |
C |
p. |
artikel |
1930 |
Reductive atmospheric acid leaching of lateritic smectite/nontronite ores in H2SO4/Cu(II)/SO2 solutions
|
Senanayake, G. |
|
2015 |
127-128 |
C |
p. 44-54 11 p. |
artikel |
1931 |
Reductive dissolution by waste newspaper for enhanced meso-acidophilic bioleaching of copper from low grade chalcopyrite: A new concept of biohydrometallurgy
|
Panda, Sandeep |
|
2015 |
127-128 |
C |
p. 98-105 8 p. |
artikel |
1932 |
Reductive dissolution of jarosite by inorganic sulfur compounds catalyzed by Acidithiobacillus thiooxidans
|
Chen, Hong-Rui |
|
|
127-128 |
C |
p. |
artikel |
1933 |
Reductive dissolution of magnetite and jarosite by Acidiphilium cryptum JF-5
|
González, Ernesto |
|
2015 |
127-128 |
C |
p. 292-297 6 p. |
artikel |
1934 |
Reductive dissolution of minerals and selective recovery of metals using acidophilic iron- and sulfate-reducing acidophiles
|
Johnson, D. Barrie |
|
2012 |
127-128 |
C |
p. 172-177 6 p. |
artikel |
1935 |
Reductive leaching behaviour of manganese and cobalt phases in laterite and manganese ores
|
Moro, Kofi |
|
|
127-128 |
C |
p. |
artikel |
1936 |
Reductive leaching of bauxite residue and subsequent scandium extraction by sulphuric acid leaching – Preliminary evaluation
|
Shoppert, A. |
|
|
127-128 |
C |
p. |
artikel |
1937 |
Reductive leaching of gallium from zinc residue
|
Wu, Xuelan |
|
2012 |
127-128 |
C |
p. 195-199 5 p. |
artikel |
1938 |
Reductive leaching of indium-bearing zinc ferrite in sulfuric acid using sulfur dioxide as a reductant
|
Fan, Yangyang |
|
2019 |
127-128 |
C |
p. 192-199 |
artikel |
1939 |
Reductive leaching of indium-bearing zinc residue in sulfuric acid using sphalerite concentrate as reductant
|
Zhang, Fan |
|
2016 |
127-128 |
C |
p. 102-106 5 p. |
artikel |
1940 |
Reductive leaching of zinc, cobalt and manganese from zinc plant residue
|
Fattahi, A. |
|
2016 |
127-128 |
C |
p. 185-192 8 p. |
artikel |
1941 |
Reductive roasting of red mud with carbon and sulfuric acid dissolution of iron and aluminum: Transformation phases and leaching characteristics
|
Huang, Yuhua |
|
|
127-128 |
C |
p. |
artikel |
1942 |
Regeneration and purification of spent electrolyte from sodium hydroxide zinc metallurgy using causticisation
|
Liu, Qing |
|
2014 |
127-128 |
C |
p. 107-113 7 p. |
artikel |
1943 |
Regeneration of alkali leaching solution through precipitation using calcium hydroxide
|
Machiela, Richard |
|
2018 |
127-128 |
C |
p. 35-42 |
artikel |
1944 |
Regeneration of sulfuric acid from electrolyte waste of the copper - smelting plant using solvent extraction
|
Gromov, P.B. |
|
2018 |
127-128 |
C |
p. 187-192 |
artikel |
1945 |
Regeneration of the ionic liquid tetraoctylammonium oleate after metal extraction
|
Parmentier, Dries |
|
2015 |
127-128 |
C |
p. 56-60 5 p. |
artikel |
1946 |
Relatedness of Cu and Fe speciation to chalcopyrite bioleaching by Acidithiobacillus ferrooxidans
|
Liu, Hong-chang |
|
2015 |
127-128 |
C |
p. 40-46 7 p. |
artikel |
1947 |
Relationship between thermal dehydroxylation and aluminium extraction from a low-grade kaolinite: Role of clay chemistry and crystallinity
|
Johnston, Cameron J. |
|
|
127-128 |
C |
p. |
artikel |
1948 |
Remediation of reduced sulfur species effects on gold and silver recovery during cyanide leaching
|
Duru, N. |
|
|
127-128 |
C |
p. |
artikel |
1949 |
Removal and fixation of arsenic by forming a complex precipitate containing scorodite and ferrihydrite
|
Otgon, Nasantogtokh |
|
2019 |
127-128 |
C |
p. 58-65 |
artikel |
1950 |
Removal and recovery of arsenic from concentrated sulfuric acid by solvent extraction
|
Jantunen, Niklas |
|
2019 |
127-128 |
C |
p. 101-112 |
artikel |
1951 |
Removal and recovery of lead in a fluidized-bed reactor by crystallization process
|
de Luna, Mark Daniel G. |
|
2015 |
127-128 |
C |
p. 6-12 7 p. |
artikel |
1952 |
Removal and recovery of metal ions from acidic multi-metal mine water using waste digested activated sludge as biosorbent
|
Barthen, Robert |
|
|
127-128 |
C |
p. |
artikel |
1953 |
Removal and reuse of arsenic from arsenic-bearing purified residue by alkaline pressure oxidative leaching and reduction of As (V)
|
Liu, Wei |
|
|
127-128 |
C |
p. |
artikel |
1954 |
Removal of aluminum from chloride leach solutions of rare earths using 3-((bis(2-ethylhexyloxy))phosphoryl)-3-phenylpropanoic acid (PPPA)
|
Wu, Guolong |
|
|
127-128 |
C |
p. |
artikel |
1955 |
Removal of aluminum to obtain high purity gadolinium with pyridinium-based ionic liquids
|
Hu, Kaibo |
|
|
127-128 |
C |
p. |
artikel |
1956 |
Removal of antimony from concentrated solutions with focus on tripuhyite (FeSbO4) synthesis, characterization and stability
|
Multani, Ravinder S. |
|
2017 |
127-128 |
C |
p. 263-274 |
artikel |
1957 |
Removal of arsenic from alkaline process waters of gold cyanidation by use of γ-Fe2O3@ZrO2 nanosorbents
|
Feng, C. |
|
2017 |
127-128 |
C |
p. 71-77 7 p. |
artikel |
1958 |
Removal of arsenic from “Dirty acid” wastewater via Waelz slag and the recovery of valuable metals
|
Zeng, Tao |
|
|
127-128 |
C |
p. |
artikel |
1959 |
Removal of cadmium and arsenic from Cd-As-Pb-bearing dust based on peroxide leaching and coprecipitation
|
Liu, Shufen |
|
|
127-128 |
C |
p. |
artikel |
1960 |
Removal of calcium and magnesium from lithium brine concentrate via continuous counter-current solvent extraction
|
Virolainen, Sami |
|
2016 |
127-128 |
C |
p. 9-15 7 p. |
artikel |
1961 |
Removal of calcium from phosphoric acid produced by the nitric acid process using solvent extraction with TCHDGA and stripping with water
|
Xu, Chengjin |
|
|
127-128 |
C |
p. |
artikel |
1962 |
Removal of carbonate and oxalate pollutants in the Bayer process using thermal and chemical techniques
|
Mahmoudian, Mostafa |
|
2015 |
127-128 |
C |
p. 137-148 12 p. |
artikel |
1963 |
Removal of chloride from simulated zinc sulfate electrolyte by ozone oxidation
|
Liu, Weizao |
|
2016 |
127-128 |
C |
p. 147-151 5 p. |
artikel |
1964 |
Removal of Cr(VI) from aqueous systems using FeP slag as a reducing agent
|
Zhao, Qiang |
|
|
127-128 |
C |
p. |
artikel |
1965 |
Removal of Cr(VI) from wastewater by modified montmorillonite in combination with zero-valent iron
|
Ordinartsev, D.P. |
|
|
127-128 |
C |
p. |
artikel |
1966 |
Removal of Cr(VI) using iron nanoparticles supported on porous cation-exchange resin
|
Ali, Syed Wasim |
|
2015 |
127-128 |
C |
p. 82-89 8 p. |
artikel |
1967 |
Removal of Cu and Sb from waste acid process of copper smelters for minimizing waste generation
|
Wijenayake, Janaka Jayamini |
|
|
127-128 |
C |
p. |
artikel |
1968 |
Removal of Cu from the nickel electrolysis anolyte using amorphous MnS
|
Li, Lin |
|
2014 |
127-128 |
C |
p. 149-153 5 p. |
artikel |
1969 |
Removal of Cu from the nickel electrolysis anolyte using nickel thiocarbonate
|
Chen, Xingyu |
|
2013 |
127-128 |
C |
p. 106-110 5 p. |
artikel |
1970 |
Removal of Fe3+ and Al3+ ions from phosphoric acid–nitric acid solutions with chelating resins
|
Lv, Rui |
|
2019 |
127-128 |
C |
p. 194-200 |
artikel |
1971 |
Removal of Fe(III) from Ni-Co-Fe chloride solutions using solvent extraction with TBP
|
Yi, Xintao |
|
|
127-128 |
C |
p. |
artikel |
1972 |
Removal of Fe(III) from sulfuric acid leaching solution of phosphate ores with bisphosphonic acids
|
Xu, Chengjin |
|
|
127-128 |
C |
p. |
artikel |
1973 |
Removal of fluoride from the mixed Ni-Co-Mn sulfate leach solution of spent lithium ion batteries using polyaluminum sulfate
|
Xu, Xin |
|
|
127-128 |
C |
p. |
artikel |
1974 |
Removal of fluoride ions from zinc sulfate solution by mesoporous alumina: Performance and mechanism
|
Xiao, Jing |
|
|
127-128 |
C |
p. |
artikel |
1975 |
Removal of fluoride ions from ZnSO4 electrolyte by amorphous porous Al2O3 microfiber clusters: Adsorption performance and mechanism
|
Yang, Kai |
|
|
127-128 |
C |
p. |
artikel |
1976 |
Removal of fluorine ions from industrial zinc sulfate solution by a layered aluminum-based composite
|
Tian, Zhongliang |
|
2017 |
127-128 |
C |
p. 222-227 6 p. |
artikel |
1977 |
Removal of gangue components from low-grade iron ore by hydrothermal treatment
|
Mochizuki, Yuuki |
|
2019 |
127-128 |
C |
p. |
artikel |
1978 |
Removal of halogens from Pb-bearing dust by alkaline washing
|
Liu, Shufen |
|
|
127-128 |
C |
p. |
artikel |
1979 |
Removal of heavy metals from aqueous solutions by liquid cation exchanger in a jet loop contactor
|
Abdel-Aziz, M.H. |
|
2013 |
127-128 |
C |
p. 126-132 7 p. |
artikel |
1980 |
Removal of heavy metals from polluted water using magnetic adsorbent based on κ-carrageenan and N-doped carbon dots
|
Rahmani, Zeinab |
|
|
127-128 |
C |
p. |
artikel |
1981 |
Removal of hexavalent chromium by limonite in aqueous solutions
|
Baig, Shams Ali |
|
2013 |
127-128 |
C |
p. 33-39 7 p. |
artikel |
1982 |
Removal of high-concentration of arsenic in acidic wastewater through zero-valent aluminium powder and characterisation of products
|
Liao, Tianqi |
|
|
127-128 |
C |
p. |
artikel |
1983 |
Removal of impurities from bismuth pickling solution using solvent extraction with TBP
|
Fan, Jinlong |
|
|
127-128 |
C |
p. |
artikel |
1984 |
Removal of impurities from metallurgical grade silicon with metal assisted chemical leaching
|
Xi, Fengshuo |
|
2018 |
127-128 |
C |
p. 250-255 |
artikel |
1985 |
Removal of impurity Metals as Phosphates from Lithium-ion Battery leachates
|
Klaehn, John R. |
|
|
127-128 |
C |
p. |
artikel |
1986 |
Removal of iron, aluminium, manganese and copper from leach solutions of lithium-ion battery waste using ion exchange
|
Virolainen, Sami |
|
|
127-128 |
C |
p. |
artikel |
1987 |
Removal of iron from sythetic copper leach solution using a hydroxy-oxime chelating resin
|
Zhang, Yahui |
|
2016 |
127-128 |
C |
p. 154-158 |
artikel |
1988 |
Removal of lead from polluted waters using ion exchange resin with Ca(NO3)2 for elution
|
Lalmi, Afaf |
|
2018 |
127-128 |
C |
p. 287-293 |
artikel |
1989 |
Removal of metal ions from cyanide gold extraction wastewater by alkaline ion-exchange fibers
|
Zhou, Shijie |
|
|
127-128 |
C |
p. |
artikel |
1990 |
Removal of Mn(II) from hydrochloric acid leach liquors of nickel laterite ore through microbubble oxidation and acid leaching
|
Xu, Ziyang |
|
|
127-128 |
C |
p. |
artikel |
1991 |
Removal of nickel ions by cementation on zinc from NiSO4 solution in presence of accelerator non-toxic organic compounds
|
Abdel Rahman, Hanaa Hammam |
|
|
127-128 |
C |
p. 111-117 |
artikel |
1992 |
Removal of organic compounds from Bayer liquor by oxidation with sodium nitrate
|
Li, Mengnan |
|
|
127-128 |
C |
p. |
artikel |
1993 |
Removal of scorodite arsenic from gold ore in the form of AS2S3 and AS4S4
|
Boboev, I.R. |
|
|
127-128 |
C |
p. |
artikel |
1994 |
Removal of silicon from CFB-derived fly ash leachate in the context of phosphorus recovery
|
Budhathoki, Roshan |
|
2018 |
127-128 |
C |
p. 215-221 |
artikel |
1995 |
Removal of silicon from highly acidic HCl medium to produce purified TiO2
|
Lefler, Hyrum |
|
2017 |
127-128 |
C |
p. 218-223 6 p. |
artikel |
1996 |
Removal of sodium (Na2O) from alumina extracted coal fly ash by a mild hydrothermal process
|
Li, Huiquan |
|
2015 |
127-128 |
C |
p. 1-5 5 p. |
artikel |
1997 |
Removal of sulfate from extremely acidic mine waters using low pH sulfidogenic bioreactors
|
Ňancucheo, Ivan |
|
2014 |
127-128 |
C |
p. 222-226 5 p. |
artikel |
1998 |
Removal of the vanadium impurities from crude TiCl4 with high content of vanadium using a mixture of Al power and white mineral oil
|
Xiong, Shaofeng |
|
2012 |
127-128 |
C |
p. 16-22 7 p. |
artikel |
1999 |
Removal of thorium and uranium from leach solutions of ion-adsorption rare earth ores by solvent extraction with Cextrant 230
|
Yang, Xiaojing |
|
|
127-128 |
C |
p. |
artikel |
2000 |
Removal of trace copper from simulated nickel electrolytes using a new chelating resin
|
Qiu, Xuejing |
|
2018 |
127-128 |
C |
p. 121-131 |
artikel |