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Distinct Roles of Acidophiles in Complete Oxidation of High-Sulfur Ferric Leach Product of Zinc Sulfide Concentrate

机译:嗜酸性氧化锌硫化锌浓缩物完全氧化的不同作用

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摘要

A two-step process, which involved ferric leaching with biologically generated solution and subsequent biooxidation with the microbial community, has been previously proposed for the processing of low-grade zinc sulfide concentrates. In this study, we carried out the process of complete biological oxidation of the product of ferric leaching of the zinc concentrate, which contained 9% of sphalerite, 5% of chalcopyrite, and 29.7% of elemental sulfur. After 21 days of biooxidation at 40 °C, sphalerite and chalcopyrite oxidation reached 99 and 69%, respectively, while the level of elemental sulfur oxidation was 97%. The biooxidation residue could be considered a waste product that is inert under aerobic conditions. The results of this study showed that zinc sulfide concentrate processing using a two-step treatment is efficient and promising. The microbial community, which developed during biooxidation, was dominated by Acidithiobacillus caldus, Leptospirillum ferriphilum, Ferroplasma acidiphilum, Sulfobacillus thermotolerans, S. thermosulfidooxidans, and Cuniculiplasma sp. At the same time, F. acidiphilum and A. caldus played crucial roles in the oxidation of sulfide minerals and elemental sulfur, respectively. The addition of L. ferriphilum to A. caldus during biooxidation of the ferric leach product proved to inhibit elemental sulfur oxidation.
机译:一个两步骤的过程,其中涉及铁与浸出生物产生的溶液和随后用生物氧化微生物群落,先前已经提出了用于低档硫化锌精矿的处理。在这项研究中,我们进行了铁浸出的锌精矿,其中载闪锌矿的9%,黄铜矿的5%,和元素硫的29.7%的产品的完整生物氧化的过程。后在40℃生物氧化21天后,闪锌矿和黄铜矿氧化分别达到99和69%,而元素硫氧化水平为97%。生物氧化渣可以被认为是垃圾产品,是惰性的有氧条件下。本研究的结果使用两步处理是有效的和有希望的显示,硫化锌精矿的处理。微生物群落,其生物氧化过程中产生,是由嗜酸喜温,钩端螺旋体嗜铁钩端螺旋菌,铁原体acidiphilum,硫化杆菌thermotolerans,S. thermosulfidooxidans和Cuniculiplasma藻为主。与此同时,F acidiphilum和A.喜温在硫化矿物和元素硫的氧化分别发挥了关键作用。铁浸出产物的生物氧化期间A.喜温加入L.嗜铁钩端螺旋菌的证明抑制元素硫氧化。

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