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Effect of hydrogen peroxide on selective flotation of chalcocite and enargite
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作者 Gde Pandhe Wisnu Suyantara Daniyarov Berdakh +4 位作者 Hajime Miki Tsuyoshi Hirajima Keiko Sasaki Daishi Ochi Yuji Aoki 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第6期703-716,共14页
Enargite is typically associated with chalcocite.Owing to the similarity in the flotation behaviors of these minerals,both minerals are reported to concentrate in the conventional flotation circuit.However,inorganic a... Enargite is typically associated with chalcocite.Owing to the similarity in the flotation behaviors of these minerals,both minerals are reported to concentrate in the conventional flotation circuit.However,inorganic arsenic in enargite can decrease the copper concentrate quality and increase the operating cost of processing this concentrate.Separating these minerals is important for cleaner copper production to avoid these effects.In this context,this study investigated the effect of hydrogen peroxide(H_(2)O_(2))treatment on the flotation behavior of chalcocite and enargite.Flotation tests of pure and mixed minerals indicated that H_(2)O_(2)treatment reduced the floatability of chalcocite and enargite by forming sulfate and copper hydroxide on their surfaces.Despite the detrimental effect of the H_(2)O_(2)treatment,there was a narrow window of H_(2)O_(2)concentration for separating both minerals,in which enargite floated and chalcocite was depressed.This selective flotation behavior was caused by the rapid adsorption of potassium amyl xanthate(KAX)and lower surface oxidation of enargite compared with that of chalcocite. 展开更多
关键词 ENARGITE chalcocite Hydrogen peroxide Potassium amyl xanthate Selective flotation
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Mechanism study on flotation separation of molybdenite from chalcocite using thioglycollic acid as depressant 被引量:7
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作者 Qin Wenqing Wu Jiajia +1 位作者 Jiao Fen Zeng Jinming 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第6期1043-1049,共7页
Effects of collectors(butyl xanthate(BX), O-isopropyl-N-sulfur ethyl carbamate(Z-200) and emulsified kerosene), dereagent(sodium sulfide) and depressant thioglycollic acid(TGA) on the flotation of chalcocite and molyb... Effects of collectors(butyl xanthate(BX), O-isopropyl-N-sulfur ethyl carbamate(Z-200) and emulsified kerosene), dereagent(sodium sulfide) and depressant thioglycollic acid(TGA) on the flotation of chalcocite and molybdenite were investigated through flotation. The first principle theory was adopted to understand the difference of their surfaces and reaction between minerals and reagents. Results of flotation tests revealed that selectivity of emulsified kerosene is the best of three collectors in separation of chalcocite and molybdenite, though the others also display excellent collecting properties. Sodium sulfide can effectively remove collectors adsorbed on chalcocite surface, and TGA is an effective depressant of chalcocite at pH 8-9. Through first principle study, molybdenite displays relatively stronger covalence property while bonding interaction between copper atoms in chalcocite enhanced its ionicity. Bonding interaction is weaker in reaction of TGA and molybdenite, so it shows higher hydrophobicity and better flotability. Therefore, TGA is an effective inhibitor in the separation. 展开更多
关键词 chalcocite MOLYBDENITE Thioglycollic ACID FLOTATION FIRST-PRINCIPLES STUDY
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Bioleaching and dissolution kinetics of pyrite,chalcocite and covellite 被引量:6
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作者 SHANG He GAO Wen-cheng +1 位作者 WU Biao WEN Jian-kang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2037-2051,共15页
In this work,the bioleaching process of pyrite,chalcocite and covellite which were the main phase compositions for Zijin copper mineral was comprehensively studied.The influence parameters,such as leaching temperature... In this work,the bioleaching process of pyrite,chalcocite and covellite which were the main phase compositions for Zijin copper mineral was comprehensively studied.The influence parameters,such as leaching temperature,Fe^(3+)concentration,pH of solution and bacteria concentration were investigated.The leaching kinetics of the pyrite,chalcocite and covellite under the studied conditions was successfully modeled by an empirical diffusion-like equation,respectively.The apparent activity energy of pyrite leaching,chalcocite leaching(stage Ⅱ)and covellite leaching was calculated to be 69.29,65.02 and 84.97 kJ/mol,respectively. 展开更多
关键词 PYRITE chalcocite COVELLITE BIOLEACHING KINETICS
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Effect of CO_2 and N_2 on microbial community changes during column bioleaching of low-grade high pyrite-bearing chalcocite ore 被引量:4
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作者 陈勃伟 武彪 +1 位作者 刘兴宇 温建康 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第12期4528-4535,共8页
Simulated heap bioleaching of low-grade high pyrite-bearing chalcocite ore was conducted at 40 °C with aeration of CO_2 and N_2.Ore samples were collected at day 43,64,85,106 and subjected to microbial community ... Simulated heap bioleaching of low-grade high pyrite-bearing chalcocite ore was conducted at 40 °C with aeration of CO_2 and N_2.Ore samples were collected at day 43,64,85,106 and subjected to microbial community analysis by 16S rRNA gene clone library.Phylogenetic analyses of 16S rDNA fragments revealed that the retrieved sequences are mainly related to genus Acidithiobacillus,Leptospirillum and Sulfobacillus.Aeration of CO_2 and N_2 significantly impacted the microbial community composition.When CO_2 was aerated,the proportion of genus Acidithiobacillus considerably increased,whereas the proportion of genus Leptospirillum and genus Sulfobacillus declined.However,with the aeration of N_2,the proportion of genus Acidithiobacillus and Leptospirillum increased,but genus Sulfobacillus decreased.When there was no aeration,the microbial community was similar to the inocula with the proportion of genus Leptospirillum mounted.These results indicated that the limitation of oxygen could change the bioleaching microbial community and the aeration of CO_2 and N_2 was favourable for the growth of sulfur-oxidizer(At.caldus) and iron-oxidizer(L.ferriphilum) respectively,which could be used for the regulation of microorganisms' role in mineral bioleaching. 展开更多
关键词 BIOLEACHING CO2 N2 chalcocite PYRITE microbial community
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Comparison on the leaching kinetics of chalcocite and pyrite with or without bacteria 被引量:3
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作者 RUAN Renman ZHOU E +3 位作者 LIU Xingyu WU Biao ZHOU Guiying WEN Jiankang 《Rare Metals》 SCIE EI CAS CSCD 2010年第6期552-556,共5页
The acid leaching,ferric leaching,and bioleaching of chalcocite and pyrite minerals were conducted in two sets of 3L stirred reactors.The dissolution rates of copper and iron were correlated with leaching conditions.I... The acid leaching,ferric leaching,and bioleaching of chalcocite and pyrite minerals were conducted in two sets of 3L stirred reactors.The dissolution rates of copper and iron were correlated with leaching conditions.In the acid leaching process,the dissolution rate of chalcocite was around 40wt.% while that of pyrite was less than 4%.In the ferric leaching process with high ferric concentration,only 10 wt.% of iron in pyrite was leached out at the same retention time though the copper recovery over 60 wt.% in chalcocite.For the bioleaching process,the chalcocite leaching rate was highly increased,nearly 90 wt.% of copper was leached out,and the iron dissolution of pyrite exceeded 70 wt.%.For the two minerals,the bioleaching shows the highest leaching rate compared with the acid leaching or ferric leaching.In uncontrolled bioleaching process,pyrite could be dissolved effectively.The experimental data were fitted to the shrinking core and particle model.The results show that in all the leaching tests,the chalcocite leaching was mainly controlled by diffusion,while for the pyrite leaching,chemical reaction is the main rate-determining step. 展开更多
关键词 chalcocite PYRITE kinetic model BIOLEACHING
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Chalcocite(bio)hydrometallurgy-current state,mechanism,and future directions:A review 被引量:2
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作者 Shichao Yu Rui Liao +6 位作者 Baojun Yang Chaojun Fang Zhentang Wang Yuling Liu Baiqiang Wu Jun Wang Guanzhou Qiu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2022年第1期109-120,共12页
There has been a strong interest in technologies suited for mining and processing of low-grade ores because of the rapid depletion of mineral resources in the world.In most cases,the extraction of copper from such raw... There has been a strong interest in technologies suited for mining and processing of low-grade ores because of the rapid depletion of mineral resources in the world.In most cases,the extraction of copper from such raw materials is achieved by applying the leaching procedures.However,its low extraction efficiency and the long extraction period limit its large-scale commercial applications in copper recovery,even though bioleaching has been widely employed commercially for heap and dump bioleaching of secondary copper sulfide ores.Overcoming the technical challenges requires a better understanding of leaching kinetics and on-site microbial activities.Herein,this paper reviews the current status of main commercial biomining operations around the world,identifies factors that affect chalcocite dissolution both in chemical leaching and bioleaching,summarizes the related kinetic research,and concludes with a discussion of two on-site chalcocite heap leaching practices.Further,the challenges and innovations for the future development of chalcocite hydrometallurgy are presented in the end. 展开更多
关键词 chalcocite BIOLEACHING Heap leaching KINETICS Copper sulfides HYDROMETALLURGY
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Bioleaching of chalcocite by mixed microorganisms subjected to mutation 被引量:2
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作者 康健 邱冠周 +3 位作者 高健 王海华 吴学玲 丁建南 《Journal of Central South University》 SCIE EI CAS 2009年第2期218-222,共5页
Mixed microorganisms with elevated activity of chalcocite-leaching were screened by mutation methods. The original microorganisms collected from acid mine drainage of different sites were mixed and then treated with m... Mixed microorganisms with elevated activity of chalcocite-leaching were screened by mutation methods. The original microorganisms collected from acid mine drainage of different sites were mixed and then treated with mutagens NO2^- , diethyl sulfate (DES), UV and their combinations, respectively. Five groups of mixed microorganisms with much stronger ore-leaching ability were obtained by screening on the leaching media. Among them, group E of mixed microorganisms (treated with 1% DES for 60 min) with the best perfonnance on chalcocite-leaching, increases the content of Cu^2+ by 101.4% in 20 d of leaching compared with the control culture. In addition, group E is more tolerant to Cu^2+ in media than the control without mutation treatment. Analysis for the diversity of microbial clones indicates that half of operational taxonomic units (OTUs) in group E are Acidithiobacillus ferrooxidans. These observations suggest that group E might have potentials for industrial application. 展开更多
关键词 chalcocite mixed microorganisms BIOLEACHING MUTATION
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Control of redox potential by oxygen limitation in selective bioleaching of chalcocite and pyrite 被引量:8
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作者 Biao Wu Jian-Kang Wen +2 位作者 Bo-Wei Chen Guo-Cheng Yao Dian-Zuo Wang 《Rare Metals》 SCIE EI CAS CSCD 2014年第5期622-627,共6页
Based on the bioleaching mechanism and electrochemical studies of metal sulfides, the dissolution rates of chalcocite and pyrite are controlled by redox potentials. Experiment on the bioleaching of chalcocite and pyri... Based on the bioleaching mechanism and electrochemical studies of metal sulfides, the dissolution rates of chalcocite and pyrite are controlled by redox potentials. Experiment on the bioleaching of chalcocite and pyrite under constant redox potential by sparging with nitrogen gas was demonstrated. By leaching at low and constant redox potential(〈760 mV, vs SHE), copper recoveries of 90 %–98 % are achieved, which are 10 times more than iron recoveries. The iron-oxidizing bacterial populations are observed to continue to reduce under oxygen limitation conditions, but the Acidithiobacillus that have only sulfur-oxidizing capabilities are an attractive alternative for redox-controlled bioleaching of chalcocite.Thus, the described redox control technique might be one of the effective approaches to balance acid and iron in Zijinshan copper bio-heap leaching practice. 展开更多
关键词 PYRITE chalcocite BIOLEACHING Redox potential Oxygen limitation
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Mechanism of sodium sulfide on flotation of cyanide-depressed pyrite 被引量:7
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作者 Zhao CAO Peng WANG +2 位作者 Wen-bo ZHANG Xiao-bo ZENG Yong-dan CAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第2期484-491,共8页
The mechanism of sodium sulfide(Na2S)on the flotation of cyanide-depressed pyrite using potassium amyl xanthate(PAX)as collector was investigated by flotation test and electrochemical measurements.The flotation result... The mechanism of sodium sulfide(Na2S)on the flotation of cyanide-depressed pyrite using potassium amyl xanthate(PAX)as collector was investigated by flotation test and electrochemical measurements.The flotation results show that both PAX and Na2S can promote the flotation recovery of cyanide-depressed pyrite and their combination can further improve the pyrite flotation recovery.Electrochemical measurements show that PAX and Na2S interacted with cyanide-depressed pyrite through different mechanisms.PAX competed with cyanide and was adsorbed on the pyrite surface in the form of dixanthogen,thus enhancing the hydrophobicity and flotation of cyanide-depressed pyrite.Unlike PAX,Na2S rendered the pyrite surface hydrophobic through the reduction of ferricyanide species and the formation of elemental sulfur S0 and polysulfide Sn2-.The combined application of PAX and Na2S induced superior pyrite flotation recovery because of a synergistic effect between PAX and Na2S. 展开更多
关键词 PYRITE chalcocite FLOTATION CYANIDE DEPRESSION sodium sulfide
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Linking leach chemistry and microbiology of low-grade copper ore bioleaching at different temperatures 被引量:5
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作者 Yan Jia He-yun Sun +3 位作者 Qiao-yi Tan Hong-shan Gao Xing-liang Feng Ren-man Ruan 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第3期271-279,共9页
The effects of temperature on chalcocite/pyrite oxidation and the microbial population in the bioleaching columns of a low-grade chalcocite ore were investigated in this study. Raffinate from the industrial bioleachin... The effects of temperature on chalcocite/pyrite oxidation and the microbial population in the bioleaching columns of a low-grade chalcocite ore were investigated in this study. Raffinate from the industrial bioleaching heap was used as an irrigation solution for columns operated at 20, 30, 45, and 60℃. The dissolution of copper and iron were investigated during the bioleaching processes, and the microbial community was revealed by using a high-throughput sequencing method. The genera of Ferroplasma, Acidithiobacillus, Leptospirillum, Acidiplasma, and Sulfobacillus dominated the microbial community, and the column at a higher temperature favored the growth of moderate thermophiles. Even though microbial abundance and activity were highest at 30℃, the column at a higher temperature achieved a much higher Cu leaching efficiency and recovery, which suggested that the promotion of chemical oxidation by elevated temperature dominated the dissolution of Cu. The highest pyrite oxidation percentage was detected at 45℃. Higher temperature resulted in precipitation of jarosite in columns, especially at 60℃. The results gave implications to the optimization of heap bioleaching of secondary copper sulfide in both enhanced chalcocite leaching and acid/iron balance, from the perspective of leaching temperature and affected microbial community and activity. 展开更多
关键词 BIOLEACHING chalcocite DISSOLUTION microbial community PYRITE DISSOLUTION temperature
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Leaching of chalcopyrite: An emphasis on effect of copper and iron ions 被引量:5
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作者 YANG Cong-ren JIAO Fen QIN Wen-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2380-2386,共7页
Many researchers found that the Fe2+together with less amount of Cu2+can accelerate the leaching of chalcopyrite.In this work,the leaching of chalcopyrite with Cu2+was investigated.The leaching residuals were examined... Many researchers found that the Fe2+together with less amount of Cu2+can accelerate the leaching of chalcopyrite.In this work,the leaching of chalcopyrite with Cu2+was investigated.The leaching residuals were examined by Raman spectroscopy.Based on the leaching experiments,the chemical equilibrium in solution was calculated using Visual MINTEQ.The results showed that the Fe in chalcopyrite lattice was replaced by Cu2+;therefore,the chalcopyrite transformed into covellite.Furthermore,the formation of chalcocite occurred when Fe2+and Fe3+were added to the solution containing Cu2+.The copper extraction increased with a decrease of the initial redox potential(or the ratio of Fe3+/Fe2+). 展开更多
关键词 CHALCOPYRITE COVELLITE chalcocite LEACHING redox potential
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Acid-base characterization of foursulfide minerals 被引量:1
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作者 Lin Yuhuan(Research Center for Eco-Environmentai Sciences, Chinese Academy of Sciences, Beijing 100085, China)George W. Bailey(Environmental Research Laboratory Office of Research and Development, U. S. Environmental Protection Agency, Athens, Georgia 306 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 1994年第2期215-223,共9页
The amphoteric properties of four sulfide minerals were characterized byacidimetric-alkalimetric titration. Chalcocite, galena, and sphalerite were found to bediprotic acids, while pyrite was determined to be a tripro... The amphoteric properties of four sulfide minerals were characterized byacidimetric-alkalimetric titration. Chalcocite, galena, and sphalerite were found to bediprotic acids, while pyrite was determined to be a triprotic acid. Intrinsic acidity con-stants for the four minerals are as follows: chalcocite-pK_(a1)=5.25, pK_(a2)=9.68;galena- pK_(a1)=5.26, pK_(a2)=9.62; sphalente- pK_(a1)= 5.08, pK_(a2)= 9.13;and pyrite - pK_(a1) = 3.50,pK_(a2)=5.32, pK_(a3)=9.81. 展开更多
关键词 acid-base titration chalcocite GALENA pynte sphalerite.
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