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, QIN Wen-qing, QIU Guan- zhou. Bioleaching of complex polymetallic sulfide ores by mixed culture [J]. Journal of Central South University, 2014, 21(7): 2633-2637. DOI: 10.1007/s11771-014-2223-x. [57......
for the polymetallic Ni-Mo-PGE mineralization in the black shales of the lower Cambrian niutitang formation, South China[J]. Ore Geology Reviews, 2015, 67: 158-169. [7] ZHOU Lei, KANG Zhihong, WANG......
Gold polymetallic ore and samples collected in microzone 2 实验 电子探针成分分析和微区XRD分析在中国科学院广州地球化学研究所矿物学与成矿学重点实验室完成.采用日本电子公司(JEOL) JXA-8230 型电子探针进行分析,分析条件为:加速电压 20 kV,电流 20 nA,电流束斑直径 1~5 μm;微区XRD采用日本理学高强度微..., 2014: 1-153. HE Wen-yan. The Beiya gaint gold-polymetallic deposit: Magmatism and metallogenic model[D]. Beijing: China University of Geosiences, 2014: 1-153. [12] 刘 凡, 谭文峰, 王贻俊. 土壤中氧化锰矿物的类型及其与土壤环境条......
for the polymetallic Ni-Mo-PGE mineralization in the black shales of the lower Cambrian niutitang formation, South China [J]. Ore Geology Reviews, 2015, 67: 158-169. DOI: 10.1016......
(冶炼部分), 2002(6): 7-9. WANG Sheng-dong, YIN Cai-qiao, JIANG Kai-xi, et al. Solvent extraction separation of Ni, Co and Cu from ammonia leaching solution of ocean polymetallic nodules[J]. Nonferrous......
Jian-she, XIAO Li, ZENG Jia, LI Ban-mei, GENG Mei-mei, QIU Guan-zhou. Single and cooperative bioleaching of sphalerite by two kinds of bacteria-Acidithiobacillus ferriooxidans and Acidithiobacillus......
, 刘慎波. 凡口铅锌矿区闪锌矿的成因矿物学特征研究[J]. 岩石矿物学杂志, 2009, 28(4): 364-374.ZHANG Shu-gen, DING Cun-gen, LI Ming-gao, LIU Shen-bo. A study on some genetic mineralogical properties of sphalerite in the Fankou Pb-Zn......
chalcopyrite, covellite and chalcocite in the ore (Figs. 1 and 2). Pyrite and sphalerite were also observed as the other sulphide phases (Fig. 2). High copper content renders the ore refractory......
, 1980, 3: 253-254. [38] BOON M, HEIJNEN J J. Mechanisms and rate-limiting steps in bioleaching of sphalerite, chalcopyrite and pyrite with Thiobacillus ferrooxidans [C]//Biohydrometallurgical......
concerns, undesirable association of pyrite with minerals of economic value such as sphalerite, chalcopyrite and galena, and precious metals such as gold necessitates costly separation processes......