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Engineered strains enhance gold biorecovery from electronic scrap

机译:工程菌株可增强电子废料中的金生物回收率

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摘要

Gold bioleaching from electronic scrap materials (ESM) was examined using the bacterium Chromobacterium violaceum which produces and detoxifies cyanide, one of the few lixiviants capable of leaching gold. Gold recovery by the wild-type Chromobacterium violaceum and two genetically engineered strains (pBAD and pTAC) with an additional cyanide-producing operon were investigated and compared. The ESM was pretreated to remove metals competing for metal cyanide complexation with gold. The effect of pulp density on leaching performance by the various strains was also investigated. The pBAD strain produced the highest cyanide concentration, and achieved the highest gold recovery of 30% at 0.5% w/v pulp density, compared to 11% recovery by the wild-type bacteria. Our results demonstrated the application of lixiviant metabolic engineering in the construction of enhanced bioleaching microbes for the bioleaching of precious metals from electronic waste. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用紫罗兰色细菌检查了从电子废料(ESM)中金的生物浸出过程,该细菌会产生氰化物并将其解毒,氰化物是少数几种能够浸出金的毒物之一。研究并比较了野生型紫罗兰色杆菌和两个基因工程菌株(pBAD和pTAC)以及一个额外的产生氰化物的操纵子的金回收率。对ESM进行了预处理,以除去竞争金属与金形成氰化物的金属。还研究了纸浆密度对各种菌株浸出性能的影响。与野生型细菌的11%的回收率相比,pBAD菌株产生的氰化物浓度最高,在0.5%w / v的纸浆密度下实现了30%的最高金回收率。我们的结果表明,浸滤性代谢工程技术在构建增强型生物浸出微生物中的应用,可用于从电子废物中生物浸出贵金属。 (C)2015 Elsevier Ltd.保留所有权利。

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