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Enhancing gold recovery from electronic waste via lixiviant metabolic engineering in Chromobacterium violaceum

机译:通过紫细菌中的浸滤代谢工程增强电子废物中的金回收

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摘要

Conventional leaching (extraction) methods for gold recovery from electronic waste involve the use of strong acids and pose considerable threat to the environment. The alternative use of bioleaching microbes for gold recovery is non-pollutive and relies on the secretion of a lixiviant or (bio)chemical such as cyanide for extraction of gold from electronic waste. However, widespread industrial use of bioleaching microbes has been constrained by the limited cyanogenic capabilities of lixiviant-producing microorganisms such as Chromobacterium violaceum. Here we show the construction of a metabolically-engineered strain of Chromobacterium violaceum that produces more (70%) cyanide lixiviant and recovers more than twice as much gold from electronic waste compared to wild-type bacteria. Comparative proteome analyses suggested the possibility of further enhancement in cyanogenesis through subsequent metabolic engineering. Our results demonstrated the utility of lixiviant metabolic engineering in the construction of enhanced bioleaching microbes for the bioleaching of precious metals from electronic waste.
机译:用于从电子废物中回收金的常规浸出(提取)方法涉及使用强酸,并对环境构成相当大的威胁。生物浸出微生物用于金回收的替代用途是非污染性的,并且依赖于浸滤剂或(生物)化学药品(如氰化物)的分泌来从电子废物中提取金。然而,生物浸出微生物的广泛工业应用已经受到产生浸滤剂的微生物(例如紫色杆菌)的有限的生氰能力的限制。在这里,我们显示了一种由紫苏色杆菌代谢工程化的菌株的构建,该菌株比野生型细菌产生更多(70%)氰化物浸出液,并从电子废物中回收两倍以上的金。比较蛋白质组分析表明,可以通过随后的代谢工程进一步增强色素生成。我们的结果证明浸滤代谢工程在构建增强型生物浸出微生物中的实用性,该微生物用于从电子废物中生物浸出贵金属。

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