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生物浸出进展:B 部分:矿物工业中微生物过程的应用。

Progress in bioleaching: part B: applications of microbial processes by the minerals industries.

机构信息

Brierley Consultancy LLC, 2074 Terrace Drive, Highlands Ranch, CO 80126-2692, USA.

出版信息

Appl Microbiol Biotechnol. 2013 Sep;97(17):7543-52. doi: 10.1007/s00253-013-5095-3. Epub 2013 Jul 23.

Abstract

This review presents developments and applications in bioleaching and mineral biooxidation since publication of a previous mini review in 2003 (Olson et al. Appl Microbiol Biotechnol 63:249-257, 2003). There have been discoveries of newly identified acidophilic microorganisms that have unique characteristics for effective bioleaching of sulfidic ores and concentrates. Progress has been made in understanding and developing bioleaching of copper from primary copper sulfide minerals, chalcopyrite, covellite, and enargite. These developments point to low oxidation-reduction potential in concert with thermophilic bacteria and archaea as a potential key to the leaching of these minerals. On the commercial front, heap bioleaching of nickel has been commissioned, and the mineral biooxidation pretreatment of sulfidic-refractory gold concentrates is increasingly used on a global scale to enhance precious metal recovery. New and larger stirred-tank reactors have been constructed since the 2003 review article. One biooxidation-heap process for pretreatment of sulfidic-refractory gold ores was also commercialized. A novel reductive approach to bioleaching nickel laterite minerals has been proposed.

摘要

本综述介绍了自 2003 年上一篇小型综述(Olson 等人,应用微生物生物技术 63:249-257,2003)发表以来生物浸出和矿物生物氧化的发展和应用。已经发现了一些新的嗜酸微生物,它们具有有效浸出硫化矿和精矿的独特特性。在理解和开发从原生硫化铜矿物、黄铜矿、辉铜矿和砷黝铜矿中浸出铜方面取得了进展。这些进展表明,低氧化还原电位与嗜热细菌和古菌协同作用,可能是浸出这些矿物的关键。在商业方面,堆浸镍已投入使用,矿物生物氧化预处理硫化难处理金精矿在全球范围内的应用越来越广泛,以提高贵金属回收率。自 2003 年的综述文章发表以来,已经建造了新的和更大的搅拌槽反应器。一种用于预处理硫化难处理金矿石的生物氧化堆工艺也已商业化。提出了一种从镍红土矿中生物浸出镍的还原方法。

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