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Biotechnology in the management and resource recovery from metal bearing solid wastes: Recent advances

机译:从含金属固体废物的管理和资源回收中的生物技术:最新进展

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摘要

Solid metalliferous wastes (sludges, dusts, residues, slags, red mud and tailing wastes) originating from ferrous and non-ferrous metallurgical industries are a serious environmental threat, when waste management practices are not properly followed. Metalliferous wastes generated by metallurgical industries are promising resources for biotechnological extraction of metals. These wastes still contain significant amounts of valuable non-ferrous metals, sometimes precious metals and also rare earth elements. Elemental composition and mineralogy of the metallurgical wastes is dependent on the nature of mining site and composition of primary ores mined. Most of the metalliferous wastes are oxidized in nature and contain lesso reduced sulfidic minerals (which can be quite well processed by biohydrometallurgy). However, application of biohydrometallurgy is more challenging while extracting metals from metallurgical wastes that contain oxide minerals. In this review, origin, elemental composition and mineralogy of the metallurgical solid wastes are presented. Various bio-hydrometallurgical processes that can be considered for the extraction of non-ferrous metals from metal bearing solid wastes are reviewed.
机译:如果未正确遵循废物管理规范,则来自铁和有色冶金行业的固体金属废物(淤泥,粉尘,残留物,炉渣,赤泥和尾矿废物)将对环境造成严重威胁。冶金行业产生的含金属废物是生物技术提取金属的有前途的资源。这些废物仍含有大量有价值的有色金属,有时是贵金属,还有稀土元素。冶金废物的元素组成和矿物学取决于采矿地点的性质和开采的原始矿石的组成。大多数含金属废物在自然界中都是被氧化的,并且所含硫化矿物质较少/没有还原(可以通过生物湿法冶金很好地进行处理)。然而,从含有氧化物矿物的冶金废料中提取金属时,生物湿法冶金的应用更具挑战性。在这篇综述中,介绍了冶金固体废物的来源,元素组成和矿物学。综述了可以考虑从含金属固体废物中提取有色金属的各种生物湿法冶金工艺。

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