野生和变异的巨芽孢杆菌从未处理和预处理的电子垃圾中回收金

A. Anz
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引用次数: 6

摘要

研究了利用巨芽孢杆菌从电子废弃物中提取氰化金络合物金的工艺。细菌经过预处理和突变。通过预处理将溶液中存在的金属溶解,减少了其他金属对氰化物离子的争夺。在pH为9、9.5和10 (HCN的pKa为9.3)的条件下,细菌可以在碱性pH下生长,从而提高了可用于生物浸出的氰化物离子浓度。在矿浆密度为0.5%的预处理EWM中,新的突变菌在pH为9、9.5和10的条件下分别获得了17%、25%和21%的金。而在pH值为7的环境中生长的旧的未突变细菌,恢复了11%。结果表明,突变碱性细菌(巨型芽孢杆菌)对金的生物回收效果高于正常生理(pH 7)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microbial Recovery of Gold Metal From Untreated and Pretreated Electronic Wastes by Wild and Mutated Cyanogenic Bacillus megaterium
Technology of biorecovery by Bacillus megaterium to obtain gold as a complex of gold-cyanide from electronic waste material (EWM) was done. The bacteria were subjected to pretreatment and mutation. The exist metals in solution were dissolved via the pretreatment, that way, contest for the cyanide ion from other metals was reduced. The bacteria were subjected to mutation to be able grow at pH 9, 9.5 and 10, where the pKa of HCN is 9.3, thereby, the cyanide ion concentration available for bioleaching was increased by alkaline pH. The new mutated bacteria from the pretreated EWM at 0.5% pulp density obtained gold of 17, 25 and 21% at pH 9, 9.5 and 10, respectively. Whereas the old unmutated bacteria that grow at pH 7, recovered 11%. The outcomes demonstrated that effectiveness of the mutated alkaline bacteria (B. megaterium) in gold biorecovery was more than normal physiological (pH 7).
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