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首页> 外文期刊>Minerals >Co-Bioleaching of Chalcopyrite and Silver-Bearing Bornite in a Mixed Moderately Thermophilic Culture
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Co-Bioleaching of Chalcopyrite and Silver-Bearing Bornite in a Mixed Moderately Thermophilic Culture

机译:中度嗜热混合培养中黄铜矿和含银堇青石的共生物浸出

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Chalcopyrite and bornite are two important copper minerals, and they often coexist. In this study, the co-bioleaching of chalcopyrite and silver-bearing bornite by mixed moderately thermophilic culture at 50 °C was investigated. The bioleaching results show that the extraction percentage of Cu for co-bioleaching of chalcopyrite (Ccp) and silver-bearing bornite (Bn) (Ccp/Bn = 3:1) was 94.6%. Compared to bioleaching of chalcopyrite or silver-bearing bornite alone, the Cu extraction percentage was greatly enhanced when they were bioleached together. The leaching residues were characterized by X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). Silver-bearing bornite dissolved preferentially compared to chalcopyrite, due to galvanic interactions. Simultaneously, Ag + was released from the silver-bearing bornite into solution. Ag 2 S formed on the surface because Cu and Fe in the chalcopyrite were replaced by Ag + , accelerating chalcopyrite dissolution and enrichment of Ag on the surface of the chalcopyrite.
机译:黄铜矿和堇青石是两种重要的铜矿物质,它们经常共存。在这项研究中,研究了在50°C下适度嗜热混合培养对黄铜矿和含银的褐铁矿的共生物浸出。生物浸出结果表明,铜矿对黄铜矿(Ccp)和含银的褐铁矿(Bn)(Ccp / Bn = 3:1)的共生物浸出的铜提取率为94.6%。与单独的黄铜矿或含银的褐铁矿的生物浸出相比,将它们一起生物浸出时,铜的提取率大大提高。通过X射线衍射(XRD)和X射线光电子能谱(XPS)表征浸出残余物。与黄铜矿相比,含银的褐铁矿由于电流相互作用而优先溶解。同时,Ag +从含银的褐铁矿中释放到溶液中。由于黄铜矿中的铜和铁被Ag +取代,从而在表面形成了Ag 2 S,从而加速了黄铜矿的溶解和富集在黄铜矿表面的Ag。

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