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An environmental benign process for cobalt and lithium recovery from spent lithium-ion batteries by mechanochemical approach

机译:通过机械化学方法从废锂离子电池中回收钴和锂的环保方法

摘要

In the current study, an environmental benign process namely mechanocheinical approach was developed for cobalt and lithium recovery from spent lithium-ion batteries (LIBs). The main merit of the process was that neither corrosive acid nor strong oxidant was applied. In the proposed process, lithium cobalt oxide (obtained from spent LIBs) was firstly co-grinded with various additives in a hermetic ball milling system, then Co and Li could be easily recovered by a water leaching procedure. It was found that EDTA was the most suitable co-grinding reagent, and 98% of Co and 99% of Li were respectively recovered under optimum conditions: LiCoO2 to EDTA mass ratio 1:4, milling time 4 h, rotary speed 600 r/min and ball-to-powder mass ratio 80:1, respectively. Mechanisms study implied that lone pair electrons provided by two nitrogen atoms and four hydroxyl oxygen atoms of EDTA could enter the empty orbit of Co and Li by solid-solid reaction, thus forming stable and water-soluble metal chelates Li-EDTA and Co-EDTA. Moreover, the separation of Co and Li could be achieved through a chemical precipitation approach. This study provides a high efficiency and environmentally friendly process for Co and Li recovery from spent LIBs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在当前的研究中,开发了一种环境良性过程,即机械化学方法,用于从废锂离子电池(LIB)中回收钴和锂。该方法的主要优点是既不使用腐蚀性酸也不使用强氧化剂。在所提出的方法中,首先在密闭球磨系统中将钴酸锂(从废LIB中获得)与各种添加剂共研磨,然后可以通过水浸工艺容易地回收钴和锂。发现EDTA是最合适的共研磨剂,在最佳条件下分别回收98%的Co和99%的Li:LiCoO2与EDTA的质量比为1:4,研磨时间为4 h,转速为600 r / min和球粉质量比分别为80:1。机理研究表明,EDTA的两个氮原子和四个羟基氧原子提供的孤对电子可以通过固-固反应进入Co和Li的空轨道,从而形成稳定的水溶性金属螯合物Li-EDTA和Co-EDTA 。此外,可以通过化学沉淀法实现Co和Li的分离。这项研究为从废旧LIB中回收钴和锂提供了一种高效且环保的方法。 (C)2016 Elsevier Ltd.保留所有权利。

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