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Selective reductive leaching of cobalt and lithium from industrially crushed waste Li-ion batteries in sulfuric acid system

机译:硫酸系统中工业粉碎锂离子废电池中钴和锂的选择性还原浸出

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摘要

Recycling of valuable metals from secondary resources such as waste Li-ion batteries (LIBs) has recently attracted significant attention due to the depletion of high-grade natural resources and increasing interest in the circular economy of metals. In this article, the sulfuric acid leaching of industrially produced waste LIBs scraps with 23.6% cobalt (Co), 3.6% lithium (Li) and 6.2% copper (Cu) was investigated. The industrially produced LIBs scraps were shown to provide higher Li and Co leaching extractions compared to dissolution of corresponding amount of pure LiCoO2. In addition, with the addition of ascorbic acid as reducing agent, copper extraction showed decrease, opposite to Co and Li. Based on this, we propose a new method for the selective leaching of battery metals Co and Li from the industrially crushed LIBs waste at high solid/liquid ratio (S/L) that leaves impurities like Cu in the solid residue. Using ascorbic acid (C6H8O6) as reductant, the optimum conditions for LIBs leaching were found to be T = 80 degrees C, t = 90 min, H2SO4] = 2 M, [C6H8O6] = 0.11 M and S/L = 200 g/L. This resulted in leaching efficiencies of 95.7% for Li and 93.8% for Co, whereas in contrast, Cu extraction was only 0.7%. Consequently, the proposed leaching method produces a pregnant leach solution (PLS) with high Li (7.0 g/L) and Co (44.4 g/L) concentration as well as a leach residue rich in Cu (up to 12 wt%) that is suitable as a feed fraction for primary or secondary copper production. (C) 2018 Elsevier Ltd. All rights reserved.
机译:最近,由于高级自然资源的枯竭以及人们对金属循环经济的兴趣日益浓厚,从诸如废旧锂离子电池(LIB)之类的二次资源中回收有价值的金属引起了广泛的关注。在本文中,对工业生产的废LIB废料中的硫酸浸出进行了研究,该废料中含有23.6%的钴(Co),3.6%的锂(Li)和6.2%的铜(Cu)。与溶解相应量的纯LiCoO2相比,工业生产的LIB废料显示出更高的Li和Co浸出率。另外,通过添加抗坏血酸作为还原剂,与Co和Li相反,铜的萃取率下降。基于此,我们提出了一种从工业粉碎的LIB废料中以高固/液比(S / L)选择性浸出电池金属Co和Li的新方法,该方法会在固体残留物中留下诸如Cu之类的杂质。使用抗坏血酸(C6H8O6)作为还原剂,发现LIB浸出的最佳条件为T = 80摄氏度,t = 90分钟,H2SO4] = 2 M,[C6H8O6] = 0.11 M和S / L = 200 g / L.锂的浸出效率为95.7%,钴的浸出效率为93.8%,而相比之下,铜的浸出效率仅为0.7%。因此,提出的浸出方法可产生高浓度的Li(7.0 g / L)和Co(44.4 g / L)的富集浸出液(PLS)以及富含Cu(最高12 wt%)的浸出残渣。适合用作初级或次级铜生产的进料部分。 (C)2018 Elsevier Ltd.保留所有权利。

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  • 来源
    《Waste Management》 |2018年第6期|582-590|共9页
  • 作者单位

    Aalto Univ, Sch Chem Engn, Dept Chem & Met Engn CMET, Hydromet & Corros, POB 16200, FI-00076 Aalto, Finland;

    Aalto Univ, Sch Chem Engn, Dept Chem & Met Engn CMET, Hydromet & Corros, POB 16200, FI-00076 Aalto, Finland;

    Aalto Univ, Sch Chem Engn, Dept Chem & Met Engn CMET, Hydromet & Corros, POB 16200, FI-00076 Aalto, Finland;

    Aalto Univ, Sch Chem Engn, Dept Chem & Met Engn CMET, Hydromet & Corros, POB 16200, FI-00076 Aalto, Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Waste Li-ion batteries; Reductive leaching; LiCoO2; Ascorbic acid; Copper;

    机译:废锂离子电池还原浸出LiCoO2抗坏血酸铜;

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