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首页> 外文期刊>Journal of power sources >Product recovery from Li-ion battery wastes coming from an industrial pre-treatment plant: Lab scale tests and process simulations
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Product recovery from Li-ion battery wastes coming from an industrial pre-treatment plant: Lab scale tests and process simulations

机译:从工业预处理厂的锂离子电池废料中回收产品:实验室规模的测试和过程模拟

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In this paper two hydrometallurgical processes were analyzed for recovery of lithium and cobalt from lithium ion batteries. The effect of adding a secondary purification step by solvent extraction was evaluated in terms of product purity and economical feasibility of the process. Process routes were made of the following steps: mechanical pretreatment, leaching, primary (and secondary) purification, product recovery. Electrodic material used in leaching experiments was produced in a large scale pre-treatment plant for waste recycling. Leaching tests were performed both using chloridric acid and sulphuric acid plus glucose. In optimized conditions quantitative extraction of Co and Li were obtained for both tested systems. Iron, aluminum and copper were removed by precipitation as hydroxides, while Ni can be separated only using solvent extraction. Process simulations showed that, for the same input flow rate of batteries, the addition of solvent extraction improves the economical feasibility of the process for lithium ion battery recovery.
机译:本文分析了两种湿法冶金工艺从锂离子电池中回收锂和钴。根据产物纯度和该方法的经济可行性,评估了通过溶剂萃取添加第二步纯化步骤的效果。工艺路线包括以下步骤:机械预处理,浸出,一次(和二次)纯化,产品回收。浸出实验中使用的电子材料是在大型预处理厂生产的,用于废物回收。使用氯酸和硫酸加葡萄糖进行浸出测试。在优化的条件下,两个测试系统均获得了Co和Li的定量萃取。铁,铝和铜以氢氧化物沉淀的形式除去,而镍只能通过溶剂萃取来分离。过程仿真表明,对于相同的电池输入流量,添加溶剂萃取可提高该过程用于回收锂离子电池的经济可行性。

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