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Recovery of lithium and cobalt from spent lithium-ion batteries using organic acids: Process optimization and kinetic aspects

机译:使用有机酸从废锂离子电池中回收锂和钴:工艺优化和动力学方面

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摘要

An environmentally-friendly route based on hydrometallurgy was investigated for the recovery of cobalt and lithium from spent lithium ion batteries (LIBs) using different organic acids (citric acid, Dl-malic acid, oxalic acid and acetic acid). In this investigation, response surface methodology (RSM) was utilized to optimize leaching parameters including solid to liquid ratio (S/L), temperature, acid concentration, type of organic acid and hydrogen peroxide concentration. Based on the results obtained from optimizing procedure, temperature was recognized as the most influential parameter. In addition, while 81% of cobalt was recovered, the maximum lithium recovery of 92% was achieved at the optimum leaching condition of 60 ℃, S/L: 30 g L~(-1) citric acid concentration: 2 M, hydrogen peroxide concentration: 1.25 Vol.% and leaching time: 2 h. Furthermore, results displayed that ultrasonic agitation will enhance the recovery of lithium and cobalt. It was found that the kinetics of cobalt leaching is controlled by surface chemical reaction at temperatures lower than 45 ℃. However, diffusion through the product layer at temperatures higher than 45 ℃ controls the rate of cobalt leaching. Rate of lithium reaction is controlled by diffusion through the product layer at all the temperatures studied.
机译:研究了一种基于湿法冶金的环保路线,该路线使用了不同的有机酸(柠檬酸,Dl-苹果酸,草酸和乙酸)从废锂离子电池(LIB)中回收钴和锂。在这项研究中,利用响应面方法(RSM)优化了浸出参数,包括固液比(S / L),温度,酸浓度,有机酸类型和过氧化氢浓度。根据优化程序获得的结果,温度被认为是最有影响力的参数。另外,钴的回收率为81%,而最佳浸出条件为60℃,S / L:30 g L〜(-1)柠檬酸浓度:2 M,过氧化氢,锂的最大回收率达到92%。浓度:1.25 Vol。%,浸出时间:2 h。此外,结果表明,超声搅拌将增强锂和钴的回收率。研究发现,在低于45℃的温度下,钴的浸出动力学受表面化学反应控制。但是,在高于45℃的温度下通过产品层的扩散会控制钴的浸出速率。在所有研究的温度下,锂的反应速率均通过在产物层中的扩散来控制。

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