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首页> 外文期刊>Waste and biomass valorization >Feasibility of Bioleaching of Selected Metals from Electronic Waste by Acidiphilium acidophilum
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Feasibility of Bioleaching of Selected Metals from Electronic Waste by Acidiphilium acidophilum

机译:嗜酸性嗜酸性菌生物浸出电子废物中某些金属的可行性

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摘要

The plausibility of bioleaching of selected metals, viz. Cu, Zn, Pb and Ni, from e-waste in the form of waste printed circuit board (PCB) from a television set was evaluated using a pure culture of Acidiphilium acidophilum, a strain of acidophilic alphaproteobacteria. Results from the study indicated that A. acidophilum was able to grow in the presence of e-waste and efficiently solubilize abundant metals like Cu as well as trace metals like Zn and Ni present in PCB. At a pulp density of 1 g/L with a particle size of 600 mu m, maximum metal bioleaching efficiency of around 79% for Cu, 39% for Ni, 29% for Zn and 10% for Pb was observed at 60 days of leaching time. For Cu, bioleaching efficiency achieved at 45 days was around 78% which asymptotically increased to around 79% at 60 days. Similar asymptotic bioleaching trend was also observed for Ni, Zn and Pb. These findings highlight the practical feasibility of utilizing A. acidophilum for the successful development of bioleaching process for metal recovery from e-waste. However, the yield as well as leaching time can be improvised by optimizing various biotic and abiotic factors controlling the process.
机译:选择性金属生物浸出的合理性,即。使用酸性嗜酸杆菌属细菌的纯培养物嗜酸性嗜酸性菌,评估了电视机中以废印刷电路板(PCB)形式产生的电子废物中的Cu,Zn,Pb和Ni。研究结果表明,嗜酸曲霉能够在电子废物存在下生长,并有效地溶解PCB中存在的大量金属(如Cu)以及微量金属(如Zn和Ni)。在1 g / L的纸浆密度小于600μm的颗粒中,在60天时观察到的最大金属生物浸出效率对Cu约为79%,对Ni约为39%,对Zn为29%,对Pb为10%。浸出时间。对于铜,在45天时达到的生物浸出效率约为78%,在60天时逐渐增加至约79%。 Ni,Zn和Pb也观察到类似的渐近生物浸出趋势。这些发现突出了利用嗜酸曲霉成功开发生物浸提工艺以从电子废物中回收金属的实际可行性。但是,可以通过优化控制过程的各种生物和非生物因素来提高产量和浸出时间。

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