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Extraction of copper from an oxidized (lateritic) ore using bacterially catalysed reductive dissolution

机译:使用细菌催化还原溶解法从氧化(红土)矿石中提取铜

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An oxidized lateritic ore which contained 0.8 % (by weight) copper was bioleached in pH- and temperaturecontrolled stirred reactors under acidic reducing conditions using pure and mixed cultures of the acidophilic chemolithotrophic bacterium Acidithiobacillus ferrooxidans. Sulfur was provided as the electron donor for the bacteria, and ferric iron present in goethite (the major ferric iron mineral present in the ore) acted as electron acceptor. Significantly more copper was leached by bacterially catalysed reductive dissolution of the laterite than in aerobic cultures or in sterile anoxic reactors, with up to 78 % of the copper present in the ore being extracted. This included copper that was leached from acid-labile minerals (chiefly copper silicates) and that which was associated with ferric iron minerals in the lateritic ore. In the anaerobic bioreactors, soluble iron in the leach liquors was present as iron (II) and copper as copper (I), but both metals were rapidly oxidized (to iron (III) and copper (II)) when the reactors were aerated. The number of bacteria added to the reactors had a critical role in dictating the rate and yield of copper solubilised from the ore. This work has provided further evidence that reductive bioprocessing, a recently described approach for extracting base metals from oxidized deposits, has the potential to greatly extend the range of metal ores that can be biomined.
机译:在酸性还原条件下,使用嗜酸性的化学营养型细菌氧化亚铁硫杆菌的纯和混合培养物,在pH和温度控制的搅拌反应器中对含0.8%(重量)铜的氧化红土矿石进行生物浸出。提供硫作为细菌的电子供体,针铁矿中存在的三价铁(矿石中存在的主要三价铁矿物)充当电子受体。与有氧培养或无菌缺氧反应器相比,红土的细菌催化还原溶解作用浸出的铜要多得多,矿石中的铜含量高达78%。其中包括从对酸不稳定的矿物(主要是硅酸铜)中浸出的铜以及与红土矿石中的铁铁矿物相关的铜。在厌氧生物反应器中,浸出液中的可溶性铁以铁(II)的形式存在,而铜以铜(I)的形式存在,但是当反应器充气时,两种金属都被快速氧化(变成铁(III)和铜(II))。添加到反应器中的细菌数量在决定从矿石中溶解的铜的速率和产率方面起着至关重要的作用。这项工作提供了进一步的证据,即还原性生物处理(一种最近描述的从氧化矿床中提取贱金属的方法)具有极大地扩展可被生物开采的金属矿石范围的潜力。

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