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Effect of redox potential on bioleaching of chalcopyrite by moderately thermophilic bacteria: An emphasis on solution compositions

机译:氧化还原电势对中度嗜热细菌生物浸出黄铜矿的影响:溶液组成的重点

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Thermodynamic calculations and electrochemical measurements were employed to establish a mathematic model for predicting the optimum redox potential in chalcopyrite leaching at 318 K. The proposed model revealed that the optimum redox potential mainly depended on the temperature as well as the concentrations of Cu2+ and Fe2+. Chemical leaching (ferric leaching) of chalcopyrite indicated that the proposed model was accurate, from which the optimum redox potential of bioleaching of chalcopyrite can also be accurately predicted. Based on the model, the redox potential should be maintained at an optimum potential range (E-L-E-H) to obtain a high leaching efficiency. Moreover, the addition of Cu2+ and Fe2+ accelerated the dissolution of chalcopyrite remarkably at the initial stage of bioleaching, but the further dissolution was inhibited owing to the jarosite formed during the bioleaching process. Therefore, Cu2+ and Fe2+ should be added periodically to prevent the rapid formation of jarosite and enhance the bioleaching efficiency. (C) 2014 Elsevier B.V. All rights reserved.
机译:利用热力学计算和电化学测量建立了数学模型,以预测在318 K下黄铜矿浸出的最佳氧化还原电势。模型表明,最佳氧化还原电势主要取决于温度以及Cu2 +和Fe2 +的浓度。黄铜矿的化学浸出(铁浸出)表明所提出的模型是准确的,由此也可以准确地预测黄铜矿生物浸出的最佳氧化还原电位。根据该模型,氧化还原电势应保持在最佳电势范围(E-L-E-H),以获得高浸出效率。此外,在生物浸出初期,Cu2 +和Fe2 +的加入显着促进了黄铜矿的溶解,但由于在生物浸出过程中形成的黄钾铁矾,进一步抑制了黄铜矿的溶解。因此,应定期添加Cu 2+和Fe 2+,以防止黄钾铁矾的快速形成并提高生物浸出效率。 (C)2014 Elsevier B.V.保留所有权利。

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