深度共晶溶剂浸出法回收废锂离子电池中有价金属的可持续工艺研究

L. Yurramendi, J. Hidalgo, A. Siriwardana
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引用次数: 3

摘要

对采用低环境影响浸出介质回收锂离子电池中有价金属的可行性进行了评价。在不同类型的添加剂(如H2O2)存在的情况下,测试了几种深共晶溶剂(DES)作为浸出剂。通过考察反应时间、温度、固(黑质量)液(DES)比、添加剂类型和浓度等操作条件,对Co的回收率进行了优化。最终选择的DES氯化胆碱(33%)、乳酸(53%)和柠檬酸(13%)在55°C下进行浸出,钴的提取率超过95%。浸出机制可能始于黑色物质(BM)中活性物质的溶解,然后是Co(II)与DES的螯合。所得结果证实,这些浸出介质是目前使用的强无机酸的环保替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Sustainable Process for the Recovery of Valuable Metals from Spent Lithium Ion Batteries by Deep Eutectic Solvents Leaching
The feasibility of using low-environmental-impact leaching media to recover valuable metals from lithium ion batteries (LIBs) has been evaluated. Several deep eutectic solvents (DES) were tested as leaching agents in the presence of different type of additives (i.e., H2O2). The optimization of Co recovery was carried out by investigating various operating conditions, such as reaction time, temperature, solid (black mass) to liquid (DES) ratio, additive type, and concentration. Leaching with final selected DES choline chloride (33%), lactic acid (53%), and citric acid (13%) at 55 °C achieved an extraction yield of more than 95% for the cobalt. The leaching mechanism likely begins with the dissolution of the active material in the black mass (BM) followed by chelation of Co(II) with the DES. The results obtained confirm that those leaching media are an eco-friendly alternative to the strong inorganic acids used nowadays.
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