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首页> 外文期刊>Applied biochemistry and microbiology >Bioleaching of Sulfide Concentrates with Different Copper and Zinc Contents and Evaluation of Bioleach Residue Grade
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Bioleaching of Sulfide Concentrates with Different Copper and Zinc Contents and Evaluation of Bioleach Residue Grade

机译:硫化物的生物浸渍浓缩含量不同的铜和锌含量和生物植物残留级评价

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摘要

Bioleaching of sulfide concentrates with different copper and zinc contents using two cultures of acidophilic chemolithotrophic microorganisms, which were grown at 30 and 35 degrees C, was studied. The average leaching rate of copper was shown to be directly dependent on the copper content in the concentrate. The leaching rate of zinc was found to depend not only on the zinc content but also on the copper content. At the same time, the specific leaching rate of copper varied insignificantly (28-45 mg/(g day)), while the change in the specific leaching rate of zinc was much more pronounced (107-319 mg/(g day)) and depended on the metal contents in the concentrates. Under all conditions of bioleaching, the specific rate of zinc extraction into the aqueous phase increased significantly with an increase in the copper content in the concentrates, which indicated galvanic interactions between sulfide minerals. The possibility of the obtainment of the copper concentrates containing negligible amounts of zinc after bioleaching of the concentrates, in which the content of copper exceeded that of zinc and was not less than 10%, was shown. Bioleaching of the concentrates containing more zinc than copper is impractical.
机译:使用两种培养的嗜酸性化学型营养性微生物的硫化物浓缩物的生物酰化浓缩物,其嗜酸性化学型脱发微生物在30和35℃下生长。显示铜的平均浸出速率直接依赖于浓缩物中的铜含量。发现锌的浸出速率不仅取决于锌含量,还取决于铜含量。同时,铜的特定浸出速率不显着(28-45mg /(克)),而锌的特定浸出速率的变化更加明显(107-319 mg /(g日))并取决于浓缩物中的金属含量。在生物浸出的所有条件下,锌提取到水相中的比率显着增加了浓缩物中铜含量的显着增加,这表明硫化物矿物质之间的电抗相互作用。示出了在浓缩物中获得含有可忽略量的锌的铜浓缩物的可能性,其中显示了铜的含量超过锌的含量并不小于10%。含有更多锌的浓缩物的生物浸出比铜是不切实际的。

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