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Review of Biohydrometallurgical Metals Extraction from Polymetallic Mineral Resources

机译:从多金属矿产资源中提取生物湿法冶金金属的综述

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This review has as its underlying premise the need to become proficient in delivering a suite of element or metal products from polymetallic ores to avoid the predicted exhaustion of key metals in demand in technological societies. Many technologies, proven or still to be developed, will assist in meeting the demands of the next generation for trace and rare metals, potentially including the broader application of biohydrometallurgy for the extraction of multiple metals from low-grade and complex ores. Developed biotechnologies that could be applied are briefly reviewed and some of the difficulties to be overcome highlighted. Examples of the bioleaching of polymetallic mineral resources using different combinations of those technologies are described for polymetallic sulfide concentrates, low-grade sulfide and oxidised ores. Three areas for further research are: (i) the development of sophisticated continuous vat bioreactors with additional controls; (ii) in situ and in stope bioleaching and the need to solve problems associated with microbial activity in that scenario; and (iii) the exploitation of sulfur-oxidising microorganisms that, under specific anaerobic leaching conditions, reduce and solubilise refractory iron(III) or manganese(IV) compounds containing multiple elements. Finally, with the successful applications of stirred tank bioleaching to a polymetallic tailings dump and heap bioleaching to a polymetallic black schist ore, there is no reason why those proven technologies should not be more widely applied.
机译:此项审查的基本前提是需要精通从多金属矿石中交付一套元素或金属产品,以避免技术社会需求中的关键金属被预期耗尽。许多已验证或仍在开发中的技术将帮助满足下一代对痕量和稀有金属的需求,这可能包括生物湿法冶金在从低品位和复杂矿石中提取多种金属的广泛应用。简要回顾了可以应用的已开发生物技术,并着重指出了需要克服的一些困难。对于多金属硫化物精矿,低品位硫化物和氧化矿石,描述了使用这些技术的不同组合进行生物浸出的多金属矿物资源的实例。需要进一步研究的三个领域是:(i)开发具有附加控制功能的精密连续桶式生物反应器; (ii)在这种情况下原位和采场生物浸出以及解决与微生物活动有关的问题的需要; (iii)利用硫氧化微生物,该微生物在特定的厌氧浸出条件下可还原和溶解含有多种元素的难熔铁(III)或锰(IV)化合物。最后,随着搅拌槽生物浸出到多金属尾矿堆的成功应用以及堆生物浸出到多金属黑片岩矿石中的成功应用,没有理由不应该广泛地应用那些经过验证的技术。

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