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Recent progress in biohydrometallurgy and microbial characterisation

机译:近期生物素冶金和微生物特征的进展

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Since the discovery of microbiological metal dissolution, numerous biohydrometallurgical approaches have been developed to use microbially assisted aqueous extractive metallurgy for the recovery of metals from ores, concentrates, and recycled or residual materials. Biohydrometallurgy has helped to alleviate the challenges related to continually declining ore grades by transforming uneconomic ore resources to reserves. Engineering techniques used for biohydrometallurgy span from above ground reactor, vat, pond, heap and dump leaching to underground in situ leaching. Traditionally biohydrometallurgy has been applied to the bioleaching of base metals and uranium from sulfides and the biooxidation of sulfidic refractory gold ores and concentrates before cyanidation. More recently the interest in using bioleaching for oxide ore and waste processing, as well as extracting other commodities such as rare earth elements has been growing. Bioprospecting, adaptation, engineering and storing of microorganisms has increased the availability of suitable biocatalysts for biohydrometallurgical applications. Moreover, the advancement of microbial characterisation methods has increased the understanding of microbial communities and their capabilities in the processes. This paper reviews recent progress in biohydrometallurgy and microbial characterisation.
机译:由于发现微生物金属溶解,已经开发了许多生物中的冶金方法以使用微生物辅助水性萃取冶金来回收来自矿石,浓缩物和再循环或残余材料的金属。 BioHydomethally通过将不经济的矿石资源转化为储备,帮助缓解与连续下降矿等级相关的挑战。从地面反应器,增值税,池塘,堆和倾倒到地下浸出到地下反应器的生物素冶金跨度的工程技术。传统上,生物氢素冶金已经应用于硫化物的基础金属和铀的生物浸出和硫化物耐火金矿的生物氧化,并在氰化前浓缩物。最近,使用生物浸润对氧化物矿石和废物加工的兴趣以及提取稀土元素等其他商品一​​直在生长。微生物的生物掩模,适应,工程和储存增加了生物术冶金应用的合适生物催化剂的可用性。此外,微生物特征方法的进步增加了对微生物社区的理解及其在过程中的能力。本文评论了最近生物氢膜冶金和微生物特征的进展。

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