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Bioleaching of copper sulfide minerals assisted by microbial fuel cells

机译:通过微生物燃料电池辅助的硫化铜矿物的生物浸出

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摘要

A proof-of-concept of copper sulfide mineral bioleaching assisted by microbial fuel cells (MFCs) was demonstrated in current study. Simultaneous copper extraction and electricity generation were obtained in this bio-leaching process, providing a novel approach for copper sulfide mineral bioleaching. Compared with bioleaching of a mixture of chalcopyrite concentrate and porphyry molybdenite, bioleaching of chalcopyrite concentrate achieved higher coulomb production but lower copper extraction concentration. After 320 days bioleaching of chalcopyrite concentrate, the copper ion concentration in bioleaching solution was 244.2 mg/L and the average coulomb production was 4.4 +/- 2.2C/d. The introduction of MFCs into bioleaching processes promoted copper extraction, mainly via the decrease of pH deriving from the anodic sulfide/sulfur oxidation.
机译:目前研究证明了通过微生物燃料电池(MFCs)辅助的硫化铜矿物生物反烷酰化的概念概念。 在这种生物浸出过程中获得了同时铜提取和发电,为硫化铜矿物生物浸润提供了一种新的方法。 与黄铜矿浓缩物和卟啉钼混合物的生物浸出相比,黄铜矿浓缩物的生物浸出达到了较高的库仑产生,但铜萃取浓度较低。 320天后的黄铜矿浓缩物,生物浸出溶液中的铜离子浓度为244.2mg / L,平均库仑产生为4.4 +/- 2.2c / d。 将MFC的引入生物浸入工艺促进铜提取,主要通过从阳极硫化物/硫氧化的pH降低。

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