Bio-oxidation of pyrite during copper bioleaching in Zijinshan
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摘要: 針對紫金山銅礦堆浸過程中,在輝銅礦和銅藍等有用礦物浸出的同時,有黃鐵礦被大量浸出,造成浸出液中Fe3+濃度過高的現狀,研究了細菌浸出黃鐵礦的氧化行為和機理,重點考察了Fe3+的化學氧化以及細菌浸出黃鐵礦過程的影響因素.研究結果表明,在有菌條件下,pH值為1.6時,混合礦浸出初期,黃鐵礦的浸出率僅為5%~8%;隨著浸出時間的增加,氧化還原電位升高,浸出15d后,氧化還原電位上升到500mV以上時,黃鐵礦的浸出率可達25%.說明氧化還原電位是細菌浸出黃鐵礦過程的重要影響因素.機理研究表明,細菌浸出黃鐵礦是以間接反應為主,細菌在黃鐵礦表面的吸附對黃鐵礦的浸出具有協同作用.Abstract: During Zijinshan copper heap-leaching, lots of pyrite was leached and Fe3+ concentration was higher in solution with chalcocite and covellite leached. The oxidation behavior and mechanism of pyrite bioleaching, especially the chemical oxidation of Fe3+ and the influential factors of pyrite bioleaching were studied. The results showed that the pyrite leaching rate is 5%-8% when the pH value of solution was 1.6 and bacteria was in presence during composite leaching process at the initial stage. The redox potential of solution increases with the bioleaching time prolonging, After 15 d, when the redox potential was 500 mV, the pyrite leaching rate was over 25%. It was indicated that the higher redox potential was an important influential factor in pyrite bioleaching. The research on bioleaching mechanism showed that the indirect action of bacteria gave priority to the direct attack of microbial cells in pyrite bioleaching, and the attachment of bacteria to pyrite surface was synergetic effect to pyrite bioleaching.
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Key words:
- Zijinshan copper ore /
- bioleaching /
- pyrite /
- oxidation behavior
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