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Biomining in reverse gear: using bacteria to extract metals from oxidized ores

机译:倒档的生物线路:使用细菌从氧化矿石中提取金属

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Biomining, as traditionally practised, uses aerobic, acidophilic microorganisms to accelerate the oxidative dissolution of sulfide minerals present in ores and concentrates, thereby either causing target metals to be solubilised (e.g. copper) or made accessible to chemical extraction (e.g. gold). Many acidophiles are also able to catalyze the dissimilatory reduction of ferric iron in anoxic or oxygen-depleted environments, and can accelerate the reductive dissolution of ferric iron minerals, such as goethite, under such conditions. Recent work has demonstrated how this approach can be used to extract metals (nickel, copper, cobalt and manganese) from oxidized ores, such as laterites deposits, at low (~30°C) temperatures. Reductive mineral dissolution has been trialled successfully with a variety of ores, pointing to a generic application of this approach.
机译:传统上实践的生物线以下使用有氧嗜酸性微生物来加速矿石和浓缩物中存在的硫化物矿物的氧化溶解,从而使靶标金属溶解(例如铜)或化学提取物(例如金)。 许多嗜酸性也能够催化缺氧或氧气耗尽环境中的铁铁的含量缩小,并且可以加速铁矿物的还原溶解,例如霉菌,如这种条件。 最近的工作已经证明了这种方法如何用于从低(〜30℃)温度下从氧化矿石中从氧化矿石中提取金属(镍,铜,钴和锰)。 已经用多种矿石成功试验了还原矿物溶解,指向这种方法的通用应用。

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