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Silver-catalyzed bioleaching of enargite concentrate using moderately thermophilic microorganisms

机译:使用中度嗜热微生物浓缩烯基钛矿浓缩的银催化生物浸润

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摘要

Effect of silver (Ag) catalyst in bioleaching of enargite (Cu3AsS4) concentrate was studied using mixed cultures of moderately thermophilic acidophilic microorganisms at 45 degrees C. Addition of Ag2S enabled selective Cu dissolution from enargite while suppressing pyrite oxidation: At the highest Ag2S concentration of 0.04%, Cu recovery reached 96% while Fe dissolution was suppressed to reach only 29% by day 72. Overall results from thermodynamic calculation, liquid/solid analyses and kinetic study suggested that Ag-catalyzed bioleaching of enargite concentrate proceeds via formation of at least two types of secondary products (chalcocite, Cu2S; trisilver arsenic sulfide, Ag3AsS4): Addition of Ag2S as Ag catalyst thermodynamically and microbiologically contributed to lowering solution redox potentials during bioleaching, consequently satisfying E-ox (Cu2S) Eh E-c (Ag+) to enhance enargite dissolution via formation of chalcocite intermediate. Formation of trisilver arsenic sulfide and its intermediate layer (Cu,Ag)(3)AsS4 indicated that Cu ion in the enargite lattice is gradually substituted with Ag. Such secondary products did not impose a rate-limiting step, since the Ag-catalyzed bioleaching was shown to be controlled by a chemical surface reaction, rather than diffusion through product film which was the case in the absence of Ag2S.
机译:使用45摄氏度的中度嗜热嗜酸性嗜酸性微生物的混合培养物研究了银(Ag)催化剂在烯基钛矿(Cu3ass4)浓缩物中的影响。添加Ag2s,使能量来自烯丙基钛矿的选择性Cu溶解,同时抑制硫铁矿氧化:在最高的Ag2s浓度下0.04%,Cu回收率达到96%,而Fe溶解被抑制在72天仅达到29%。热力学计算的总体结果,液体/固体分析和动力学研究表明,烯基矿浓缩物的Ag催化的生物浸润通过形成通过形成进行两种类型的二次产物(Chalcocite,Cu2s;三姑娘砷,Ag3ass4):作为Ag催化剂加入Ag 2 S作为Ag催化剂,并且微生物学有助于在生物浸出过程中降低溶液氧化还原电位,因此满足E-OX(Cu 2 S)&呃& E-C(Ag +)通过形成Chalcocite中间体增强烯酸盐溶解。三硅砷的形成及其中间层(Cu,Ag)(3)Ass4表明烯基石晶格中的Cu离子逐渐被Ag取代。这种次级产物没有施加速率限制步骤,因为显示了Ag催化的生物浸出,因此通过化学表面反应控制,而不是通过在不存在Ag2s的情况下通过产物膜的扩散。

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