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廖勃等:有菌和无菌体系下辉铜矿氧化电化学 ·1501· rous Met Soc China,2015,25(12):4110 [27]Sasaki K,Takatsugi K,Tuovinen O H.Spectroscopic analysis of [22]Zhao H B,Wang J,Qin WQ,et al.Electrochemical dissolution the bioleaching of chalcopyrite by Acidithiobacillus caldus.Hy process of chalcopyrite in the presence of mesophilie microorgan- drometallurgy,2012,127-128:116 isms.Miner Eng,2015,71:159 [28]Wang J,Gan X W,Zhao H B,et al.Dissolution and passivation [23]Fu K B,Lin H,Mo X L,et al.Study on bioleaching of different mechanisms of chalcopyrite during bioleaching:DFT calculation, types of chalcopyrite.J Unir Sci Technol Beijing,2011,33(7): XPS and electrochemistry analysis.Miner Eng,2016,98:264 806 [29]Qiu X B,Wen J K.Huang S T,et al.New insights into the ex- (傅开彬,林海,莫晓兰,等.不同类型黄铜矿的生物浸出研 traction of invisible gold in a low-grade high-sulfur Carlin-type 究.北京科技大学学报,2011,33(7):806) gold concentrate by bio-pretreatment.Int Miner Metall Mater. [24]Biesinger M C.Hart B R,Polack R,et al.Analysis of mineral 2017,24(10):1104 surface chemistry in flotation separation using imaging XPS.Min- [30]Liu Y,Dang Z,Lu G N,et al.Utilization of electrochemical im- er Eng,2007,20(2):152 pedance spectroscopy for monitoring pyrite oxidation in the pres- [25]Zhao H B,Wang J,Qin W Q,et al.Surface species of chal- ence and absence of Acidithiobacillus ferrooxidans.Miner Eng, copyrite during bioleaching by moderately thermophilic bacteria. 2011,24(8):833 Trans Nonferrous Met Soc China,2015,25(8):2725 [31]Acres R G,Harmer S L,Shui H W,et al.Synchrotron scanning [26]Harmer S L.Pratt A R.Nesbitt W H,et al.Sulfur species at photoemission microscopy of homogeneous and heterogeneous chalcopyrite (CuFeS2)fracture surfaces.Am Mineral,2004,89 metal sulfide minerals.J Synchrotron Radiat,2011,18(4): (7):1026 649廖 勃等: 有菌和无菌体系下辉铜矿氧化电化学 rous Met Soc China, 2015, 25(12): 4110 [22] Zhao H B, Wang J, Qin W Q, et al. Electrochemical dissolution process of chalcopyrite in the presence of mesophilic microorgan鄄 isms. Miner Eng, 2015, 71: 159 [23] Fu K B, Lin H, Mo X L, et al. Study on bioleaching of different types of chalcopyrite. J Univ Sci Technol Beijing, 2011, 33(7): 806 (傅开彬, 林海, 莫晓兰, 等. 不同类型黄铜矿的生物浸出研 究. 北京科技大学学报, 2011, 33(7): 806) [24] Biesinger M C, Hart B R, Polack R, et al. Analysis of mineral surface chemistry in flotation separation using imaging XPS. Min鄄 er Eng, 2007, 20(2): 152 [25] Zhao H B, Wang J, Qin W Q, et al. Surface species of chal鄄 copyrite during bioleaching by moderately thermophilic bacteria. Trans Nonferrous Met Soc China, 2015, 25(8): 2725 [26] Harmer S L, Pratt A R, Nesbitt W H, et al. Sulfur species at chalcopyrite (CuFeS2 ) fracture surfaces. Am Mineral, 2004, 89 (7): 1026 [27] Sasaki K, Takatsugi K, Tuovinen O H. Spectroscopic analysis of the bioleaching of chalcopyrite by Acidithiobacillus caldus. Hy鄄 drometallurgy, 2012, 127鄄128: 116 [28] Wang J, Gan X W, Zhao H B, et al. Dissolution and passivation mechanisms of chalcopyrite during bioleaching: DFT calculation, XPS and electrochemistry analysis. Miner Eng, 2016, 98: 264 [29] Qiu X B, Wen J K, Huang S T, et al. New insights into the ex鄄 traction of invisible gold in a low鄄grade high鄄sulfur Carlin鄄type gold concentrate by bio鄄pretreatment. Int J Miner Metall Mater, 2017, 24(10): 1104 [30] Liu Y, Dang Z, Lu G N, et al. Utilization of electrochemical im鄄 pedance spectroscopy for monitoring pyrite oxidation in the pres鄄 ence and absence of Acidithiobacillus ferrooxidans. Miner Eng, 2011, 24(8): 833 [31] Acres R G, Harmer S L, Shui H W, et al. Synchrotron scanning photoemission microscopy of homogeneous and heterogeneous metal sulfide minerals. J Synchrotron Radiat, 2011, 18 ( 4 ): 649 ·1501·
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