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Potential impact of microbial consortia in biomining and bioleaching of commercial metals

机译:微生物集团对商业金属的生物开采和生物浸出的潜在影响

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Biomining is the use of microorganisms for the commercial extraction of lavish metals from ores and mines with least effect on environment. Microbes play vital role in bioleaching procedures in commercial mining. The bacterial cells are used to detoxify/replace waste cyanide, marginal biomass and activated carbon. These methods are preferred over conventional techniques due to energy efficient, low cost, environment friendly and production of useful by-products. At industrial scale, different microbial strains ( Acidophilic, Sulphobacillus, Rhodococcus, Ferrimicrobium & chemolithotrophic ) are deployed to boost the processes of copper and uranium bioleaching. About 20% of the world’s copper is extracted by using this technique. These extraction procedures involve oxidation of insoluble metal sulphides to soluble sulphates. The isolation of thermophilic microbes for mineral biooxidation increase the commercial extraction of minerals at industrial scale. The conventional pyrometallurgical techniques have environmental concerns as they result in depletion of high grade ores and release harmful gaseous. The microbe-assisted gold mining is expected to double the yield of gold and needs to be fully explored using diverse array of microbes. Bioleaching is simple and low cost method for the developing countries with large ore deposits. About 30 strains of microbes have been discovered so for with potential impact on bioleaching. With advances in molecular genetics, physiology and microbial genomics, more promising strains with increased bioactivities are possible. Further efforts are underway to culture diverse range of archaea and improving its genetic potential to be used as industrial tool for commercial bioleaching. The currents review enlightens the recent trends in biomining/bioleaching and implementation of modern biological approaches to engineer target microbes for commercial use.
机译:生物采矿是利用微生物从矿石和矿山中商业提取大量金属,而对环境的影响最小。微生物在商业采矿的生物浸出程序中起着至关重要的作用。细菌细胞用于解毒/替代废氰化物,边际生物质和活性炭。由于节能,低成本,环境友好和有用副产物的生产,这些方法比常规技术更可取。在工业规模上,已部署了不同的微生物菌株(嗜酸,硫杆菌,红球菌,亚铁和化营养),以促进铜和铀的生物浸出过程。使用这种技术可以提取约20%的世界铜。这些提取程序涉及将不溶性金属硫化物氧化成可溶性硫酸盐。用于矿物生物氧化的嗜热微生物的分离增加了工业规模的矿物的商业提取。常规的火法冶金技术具有环境问题,因为它们导致高品位矿石的消耗并释放有害气体。微生物辅助金矿开采有望使黄金产量翻倍,并且需要使用多种微生物进行充分开发。对于拥有大量矿床的发展中国家而言,生物浸出是一种简单且低成本的方法。已经发现了约30种微生物菌株,因此可能会对生物浸出产生影响。随着分子遗传学,生理学和微生物基因组学的进步,具有更高生物活性的更有希望的菌株成为可能。正在进一步努力培养各种古细菌,并提高其遗传潜力,以用作商业生物浸出的工业工具。目前的评论启发了生物采矿/生物浸出和现代生物学方法的商业化利用目标微生物的最新趋势。

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