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A comprehensive utilization of silver-bearing solid wastes in chalcopyrite bioleaching

机译:黄铜矿生物浸料中含银含含量固体废物的综合利用

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In this work, two types of abandoned silver-bearing solid wastes of zinc leaching residue (ZLR) and firebrick were used as silver catalysis in chalcopyrite bioleaching by mixed moderately thermophilic culture. Bioleaching results showed that the chosen ZLR and waste firebrick both remarkably promoted chalcopyrite bioleaching, and chalcopyrite was not passivated at high redox potential (more than 600 mV vs. Ag/AgCI) in the presence of silver-bearing solid wastes. The bioleaching residues were subsequently leached by thiourea to recover silver. Results indicated that silver was more easily to be extracted from bioleaching residues than from untreated silver bearing solid wastes, and high silver recovery of about 90% can be finally achieved. Hence, this work is potentially useful to provide a promising technique for promoting chalcopyrite bioleaching and for comprehensive utilization of silver-bearing solid wastes. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,用混合中等嗜热培养物用作锌浸出残留物(ZLR)和雷布的两种废弃的镀银固体废物。 生物浸出结果表明,所选择的ZLR和废物烧伤均显着促进黄铜矿生物浸渍,并且在含银含含银的固体废物存在下,黄铜矿未在高氧化还原潜力(超过600mV与Ag / AgCi)中钝化。 随后通过硫脲浸出生物浸出残余物以回收银。 结果表明,更容易从生物浸出残留物中萃取银,而不是来自未处理的银轴承固体废物,最终可以实现约90%的高银回收率。 因此,这项工作可能是提供一种用于促进硫代铜矿生物浸渍和综合利用的含金含银储存的有希望的技术有用。 (c)2017 Elsevier B.v.保留所有权利。

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