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ENGINEERED STRAINS ENHANCE GOLD BIORECOVERY FROM ELECTRONIC SCRAP

机译:工程菌株从电子废料增强金生物妇生

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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 C. violaceum and two genetically engineered strains (pBAD and pTAC) with an additional cyanide producing operon were investigated and compared. The ESM was pretreated to reduce heavy metals competing for 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 utility of lixiviant metabolic engineering in the construction of enhanced bioleaching microbes for the bioleaching of precious metals from electronic waste.
机译:使用紫杉杆菌的细菌性紫杉杆菌检查来自电子废料材料(ESM)的金生物浸渍,其产生和排毒Cyanide,其中少量含金灭活者之一能够浸出金。通过野生型C. virtaceum和两种转基因菌株(PBAD和PTAC)进行了含有另外的氰化物的菌株,并进行比较。预处理ESM以减少与金子氰化物络合竞争的重金属。还研究了纸浆密度对各种菌株浸出性能的影响。 PBAD菌株产生最高的氰化物浓度,并以0.5%w / v纸浆密度达到30%的最高金回收率,而野生型细菌的11%恢复。我们的研究结果表明,Lixiviant代谢工程效用在施工中,用于从电子废物的贵金属生物浸入的增强的生物浸入微生物。

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