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一种用于从废旧锂离子电池中重构LiNiCoMnO正极材料的绿色、高效、闭环直接再生技术。

A green, efficient, closed-loop direct regeneration technology for reconstructing of the LiNiCoMnO cathode material from spent lithium-ion batteries.

作者信息

Fan Xiaoping, Tan Chunlei, Li Yu, Chen Zhiqiang, Li Yahao, Huang Youguo, Pan Qichang, Zheng Fenghua, Wang Hongqiang, Li Qingyu

机构信息

Guangxi Key Laboratory of Low Carbon Energy Materials, School of Chemical and Pharmaceutical Science, Guangxi Normal University, Guilin 541004, China; Guangxi New Energy Ship Battery Engineering Technology Research Center, Guangxi Normal University, Guilin 541004, China.

State Key Laboratory of Silicon Materials, Key Laboratory of Advanced Materials and Applications for Batteries of Zhejiang Province, and Department of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

J Hazard Mater. 2021 May 15;410:124610. doi: 10.1016/j.jhazmat.2020.124610. Epub 2020 Nov 19.

Abstract

Lithium nickel manganese cobalt oxide in the spent lithium ion batteries (LIBs) contains a lot of lithium, nickel, cobalt and manganese. However, how to effectively recover these valuable metals under the premise of reducing environmental pollution is still a challenge. In this work, a green, efficient, closed-loop direct regeneration technology is proposed to reconstruct LiNiCoMnO (NCM523) cathode materials from spent LIBs. Firstly, the failure mechanism of NCM523 cathode materials in the spent LIBs is analyzed deeply. It is found that the spent NCM523 material has problems such as the dissolution of lithium and transition metals, surface interface failure and structural transformation, resulting in serious deterioration of electrochemical performance. Then NCM523 material was directly regenerated by supplementing metal ions, granulation, ion doping and heat treatment. Meanwhile, PO polyanions were doped into the regenerated NCM material in the recovery process, showing excellent electrochemical performance with discharge capacity of 189.8 mAh g at 0.1 C. The recovery process proposed in this study puts forward a new strategy for the recovery various lithium nickel cobalt manganese oxide (e.g., LiNiCoMnO, LiNiCoMnO, LiNiCoMnO and LiNiCoMnO) and accelerates the industrialization of spent lithium ion battery recycling.

摘要

废旧锂离子电池中的锂镍锰钴氧化物含有大量的锂、镍、钴和锰。然而,如何在减少环境污染的前提下有效回收这些有价金属仍是一项挑战。在这项工作中,提出了一种绿色、高效的闭环直接再生技术,用于从废旧锂离子电池中重构LiNiCoMnO(NCM523)正极材料。首先,深入分析了废旧锂离子电池中NCM523正极材料的失效机制。发现废旧NCM523材料存在锂和过渡金属溶解、表面界面失效以及结构转变等问题,导致电化学性能严重恶化。然后通过补充金属离子、造粒、离子掺杂和热处理对NCM523材料进行直接再生。同时,在回收过程中将PO多阴离子掺杂到再生的NCM材料中,在0.1 C下放电容量为189.8 mAh g,表现出优异的电化学性能。本研究提出的回收工艺为回收各种锂镍钴锰氧化物(如LiNiCoMnO、LiNiCoMnO、LiNiCoMnO和LiNiCoMnO)提出了一种新策略,并加速了废旧锂离子电池回收的产业化进程。

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