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Separation of lithium and transition metals from leachate of spent lithium-ion batteries by solvent extraction method with Versatic 10

机译:用溶剂萃取方法用溶剂萃取方法将锂和过渡金属与溶剂萃取方法进行分离10

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摘要

When extracting metals from the leaching liquor of spent lithium-ion batteries (LIBs), the focus of traditional methods has been putting on the separation of transition metals, i.e. manganese, cobalt and nickel, which needs a long treatment process and causes significant loss of lithium. In this study, a simple and efficient process consisting of co-extraction of transition metals with neodecanoic acid (Versatic 10) and recovery of lithium by carbonate precipitation is developed. Firstly, the extraction mechanism of Versatic 10 is explored by slope analysis. And the results show that Versatic 10 has better selectivity to nickel and cobalt than to manganese, and it hardly extracts lithium. Then, practical experiments on solvent extraction conditions are carried out. The total extraction efficiencies of nickel, manganese and cobalt, after two stages of extraction, reach 99.18%, 97.05% and 98.47%, respectively. The experimental results are consistent with the theoretical analysis results. Finally, lithium is recovered by Na2CO3 precipitation. The purity of recovered lithium carbonate is high up to 99.61%. By using this process, the obtained solution of nickel, manganese and cobalt can be directly used to prepare ternary material precursor, and only 8% of lithium is lost.
机译:当从锂离子电池(LIBS)的浸出液中提取金属时,传统方法的焦点一直在平面过渡金属,即锰,钴和镍的分离,这需要长治疗过程并导致显着的损失锂。在该研究中,开发了一种简单富有高效的方法,包括具有碳酸盐沉淀的新己酸(Versic 10)的过渡金属的共萃萃取和通过碳酸盐沉淀恢复。首先,通过斜率分析探索了显着10的提取机制。结果表明,显术10对镍和钴的选择性比锰具有更好的选择性,并且几乎没有提取锂电片。然后,进行了对溶剂提取条件的实际实验。镍,锰和钴的总萃取效率分别在萃取两次,达到99.18%,97.05%和98.47%。实验结果与理论分析结果一致。最后,通过Na 2 CO 3沉淀回收锂。回收的碳酸锂的纯度高达99.61%。通过使用该方法,可以直接使用所得镍,锰和钴的溶液来制备三元材料前体,并且只有8%的锂损失。

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