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首页> 外文期刊>Separation and Purification Technology >Recovery of metals from spent lithium-ion batteries using ionic liquid [P-8888][Oleate]
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Recovery of metals from spent lithium-ion batteries using ionic liquid [P-8888][Oleate]

机译:使用离子液体从废锂离子电池中恢复金属[P-8888] [果糕]

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摘要

A separation method to selectively recover valuable metals (Co, Ni, Mn and Li) from synthetic spent lithium-ion battery cathodes leachate using a fatty-acid-based ionic liquid, tetraoctylphosphonium oleate [P-8888][oleate] is demonstrated. The investigated parameters for this selective separation and recovery process include extraction pH, contact time and composition of the regeneration solution. The benefit of using this ionic liquid is that > 99% of Co and > 99% of the Mn can be separated from the Ni and the Li by a two-stage extraction process. A subsequent single regeneration process separates the Co from the Mn. Finally, Ni and Li are completely separated in an additional regeneration process. An economic potential analysis concludes the paper, revealing that given the current cobalt price, the process outlined here shows a positive zero-order Economic Potential (bases on product sales and raw material cost) when using a 4 M HCl leaching solution and for leachates containing at least 4.5 g Co per liter.
机译:使用脂肪酸基离子液体选择性地从合成的锂离子电池阴极渗滤液中选择性地回收有价值金属(CO,Ni,Mn和Li)的分离方法,证明了四氢膦酰铵溶解物[P-8888] [葡萄糖]。该选择性分离和恢复过程的研究参数包括提取pH,接触时间和再生溶液的组成。使用该离子液体的益处是,通过两级萃取过程可以与Ni和Li分离出99%的CO和> 99%的Mn。随后的单一再生过程将CO与Mn分离。最后,Ni和Li在额外的再生过程中完全分开。经济潜力分析结束了本文,揭示了鉴于目前的钴价格,这里概述的过程显示了使用4M HCl浸出溶液和含有渗滤液的零级经济潜力(产品销售和原料成本的基础)每升至少4.5克。

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