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High-value utilization of recovered LiPF6 from retired lithium-ion batteries.

Authors :
Wang, Jie
Cui, Xiaoling
Song, Linhu
Zhu, Junlong
Wang, Yinong
Zong, Feifei
Zhang, Ningshuang
Zhao, Dongni
Li, Shiyou
Source :
Green Chemistry. 2/21/2024, Vol. 26 Issue 4, p2162-2169. 8p.
Publication Year :
2024

Abstract

With the large-scale retirement of new energy vehicles, it is particularly important to recycle and reuse retired lithium-ion batteries (LIBs). However, the current improper handling of spent electrolytes will cause serious environmental problems. Here, we propose a novel, simple and easy-to-implement method to realize the high-value utilization of recovered electrolytes from retired LIBs. Comparing with the initial content of LiPF6 (1 mol L−1 in a mixed carbonate solvent system, and about 1 g in a 18650 type LIB) in fresh batteries, a maximum leaching efficiency of 29% could be realized during the full-component resource reclamation of retired LIBs, using the selective mixed leaching solvent system of dimethyl carbonate + CHClF2 (1 : 1, v/v ratio). Then the water and HF impurities are reduced from 80.90 ppm to 4.56 ppm and from 1312.91 ppm to 291.52 ppm by pre-treatment with hexamethyl disilazane (C6H19NSi2). Although the purified electrolyte does not meet the standards for re-use in LIBs, it can be used as a synthetic raw material for lithium salt additives. As a typical case, the LiPF6 salt in a leached electrolyte is recycled into a salt additive of lithium difluorodioxalate phosphate (LiDFBOP) under the preferred reaction conditions (75 °C, 27 h, with a molar ratio of 1 : 3 for LiPF6 : bis (trimethylsilicon)oxalate), realizing closed-loop recycling. The electrochemical results show that the electrochemical performances of the graphite/Li and LNCA/Li half cells are significantly improved with the addition of the as-prepared LiDFBOP additive. This research gives a large-scale synthesis route to realize high-value utilization of low-quality LiPF6, and helps establish a full-component resource reclamation process of retired LIBs. It not only improves environmental friendliness, but also realizes the high efficiency utilization of resources. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14639262
Volume :
26
Issue :
4
Database :
Academic Search Index
Journal :
Green Chemistry
Publication Type :
Academic Journal
Accession number :
175524899
Full Text :
https://doi.org/10.1039/d3gc03997h