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A New Direction for Biomining: Extraction of Metals by Reductive Dissolution of Oxidized Ores

机译:生物采矿的新方向:通过还原溶解氧化矿石来提取金属

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Biomining, the biotechnology that uses microorganisms to extract metals from ores and concentrates, is currently used exclusively for processing reduced ores and mine wastes. Metals of economic value also occur extensively in oxidized ores, such as nickel laterites. While these are not amenable to oxidative dissolution, the ferric iron minerals they contain can, in theory, be disrupted by iron reduction, causing associated metals to be released. We have harnessed the ability of the facultatively anaerobic, acidophilic bacterium Acidithiobacillus ferroooxidans to couple the oxidation of elemental sulphur to the reduction of ferric iron in the goethite fraction of a limonitic nickel ore at 30 °C. Nickel and other metals (Co, Cr and Mn) were effectively solubilised and maintained in solution due to the low pH (1.8) of the leach liquor. The results highlight the potential for the bioprocessing of oxidized, iron-rich ores using an approach that is energy-saving and environmentally-benign compared with metallurgical processes currently applied to the extraction of Ni from lateritic ores.
机译:生物采矿是一种利用微生物从矿石和精矿中提取金属的生物技术,目前仅用于处理还原的矿石和矿山废物。具有经济价值的金属还广泛存在于氧化矿石中,例如镍红土。尽管这些不适合氧化溶解,但从理论上讲,它们所含的三价铁矿物质可被铁还原破坏,导致相关金属被释放。我们利用了兼性厌氧,嗜酸细菌酸性氧化铁硫杆菌氧化铁的能力,将元素硫的氧化与氧化铁镍矿在30°C的针铁矿馏分中的三价铁还原。镍和其他金属(Co,Cr和Mn)由于浸出液的低pH值(1.8)而有效地溶解并保持在溶液中。结果表明,与目前用于从红土矿石中提取镍的冶金工艺相比,采用节能,环保的方法可对氧化的富铁矿石进行生物处理。

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