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Effect of carbonaceous matter on copper behavior in bioleaching from waste printed circuit boards

机译:碳质物质对废印刷电路板生物浸浸铜行为的影响

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In this paper, the effects of humic acid, activated carbon and graphite on the bioleaching behavior of copper from waste printed circuit boards (WPCBs) with HQ0211 bacteria strain have been investigated. The compatibility test and the optimal additive amount of carbonaceous matter and the mechanism analysis were studied. It was demonstrated that humic acid has good compatibility with microorganisms. Humic acid can significantly promote the dissolution rate of copper with appropriate amount. The addition of activated carbon and graphite could inhibit the growth of bacteria. And the inhibition was weakened on the bioleaching process. The optimal condition of bioleaching copper was WPCBs 50 g L-1, initial pH 1.5, bacterial leaching time 7 days, the leaching rate of copper increased by 11.08%, 8.71% and 6.84% respectively in the experimental group with proper dosage of humic acid, activated carbon and graphite.
机译:本文研究了腐殖酸,活性炭和石墨对来自废印刷电路板(WPCB)与HQ0211细菌菌株的铜的生物浸出行为的影响。 研究了碳质物质的相容性测试和最佳添加量和机制分析。 结果表明,腐殖酸与微生物具有良好的相容性。 腐殖酸可以显着促进铜的溶解速率以适当的量。 添加活性炭和石墨可以抑制细菌的生长。 在生物浸入过程中抑制抑制。 生物浸润铜的最佳状况为WPCBS 50g L-1,初始pH 1.5,细菌浸出时间7天,铜的浸出速率分别在实验组中增加了11.08%,8.71%和6.84%,具有适当的腐殖酸剂量 ,活性炭和石墨。

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