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Recovery of Metals from Waste Lithium Ion Battery Leachates Using Biogenic Hydrogen Sulfide

机译:利用生物硫化氢从废锂离子电池渗滤液中回收金属

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Lithium ion battery (LIB) waste is increasing globally and contains an abundance of valuable metals that can be recovered for re-use. This study aimed to evaluate the recovery of metals from LIB waste leachate using hydrogen sulfide generated by a consortium of sulfate-reducing bacteria (SRB) in a lactate-fed fluidised bed reactor (FBR). The microbial community analysis showed Desulfovibrio as the most abundant genus in a dynamic and diverse bioreactor consortium. During periods of biogenic hydrogen sulfide production, the average dissolved sulfide concentration was 507 mg L ?1 and the average volumetric sulfate reduction rate was 278 mg L ?1 d ?1 . Over 99% precipitation efficiency was achieved for Al, Ni, Co, and Cu using biogenic sulfide and NaOH, accounting for 96% of the metal value contained in the LIB waste leachate. The purity indices of the precipitates were highest for Co, being above 0.7 for the precipitate at pH 10. However, the process was not selective for individual metals due to simultaneous precipitation and the complexity of the metal content of the LIB waste. Overall, the process facilitated the production of high value mixed metal precipitates, which could be purified further or used as feedstock for other processes, such as the production of steel.
机译:锂离子电池(LIB)废物在全球范围内不断增加,其中包含大量可以回收再利用的贵重金属。这项研究的目的是评估在喂哺乳酸盐的流化床反应器(FBR)中使用硫酸盐还原细菌财团(SRB)产生的硫化氢从LIB废渗滤液中回收金属的方法。微生物群落分析表明,脱硫弧菌是动态和多样的生物反应器联盟中最丰富的属。在生物硫化氢的生产过程中,平均溶解硫化物浓度为507 mg L?1,硫酸盐的平均体积减少率为278 mg L?1 d?1。使用生物硫化物和NaOH可以使Al,Ni,Co和Cu的沉淀效率超过99%,占LIB垃圾渗滤液中金属含量的96%。沉淀物的纯度指数对于Co最高,在pH 10时沉淀物的纯度指数高于0.7。但是,由于同时沉淀和LIB废料中金属含量的复杂性,该方法对个别金属没有选择性。总体而言,该工艺促进了高价值混合金属沉淀物的生产,这些沉淀物可以进一步纯化或用作其他工艺(如钢铁生产)的原料。

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