Li Xiangnan, Ge Ming, Zhou Qibin, Gao Zhangchen, Cui Yuantao, Zhang Mengdan, Tang Xinyu, Zhang Huishuang, Shi Zhenpu, Yin Yanhong, Yang Shuting
School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan 453007, China.
National and Local Joint Engineering Laboratory of Motive Power and Key Materials, Xinxiang, Henan 453007, China.
Langmuir. 2023 Sep 19;39(37):13132-13139. doi: 10.1021/acs.langmuir.3c01530. Epub 2023 Sep 1.
Efficient recycling of spent lithium-ion batteries (LIBs) is significant for solving environmental problems and promoting resource conservation. Economical recycling of LiFePO (LFP) batteries is extremely challenging due to the inexpensive production of LFP. Herein, we report a preoxidation combine with cation doping regeneration strategy to regenerate spent LiFePO (SLFP) with severely deteriorated. The binder, conductive agent, and residual carbon in SLFP are effectively removed through preoxidation treatment, which lays the foundation for the uniform and stable regeneration of LFP. Mg doping is adopted to promote the diffusion efficiency of lithium ions, reduces the charge-transfer impedance, and further improves the electrochemical performance of the regenerated LFP. The discharge capacity of SLFP with severe deterioration recovers successfully from 43.2 to 136.9 mA h g at 0.5 C. Compared with traditional methods, this technology is simple, economical, and environment-friendly. It provided an efficient way for recycling SLFP materials.
高效回收废旧锂离子电池(LIBs)对于解决环境问题和促进资源节约具有重要意义。由于磷酸铁锂(LFP)生产成本低廉,对其进行经济回收极具挑战性。在此,我们报道一种预氧化结合阳离子掺杂的再生策略,用于再生严重劣化的废旧磷酸铁锂(SLFP)。通过预氧化处理有效去除了SLFP中的粘结剂、导电剂和残余碳,为LFP的均匀稳定再生奠定了基础。采用镁掺杂来提高锂离子的扩散效率,降低电荷转移阻抗,并进一步改善再生LFP的电化学性能。严重劣化的SLFP在0.5 C下的放电容量成功从43.2 mA h g恢复到136.9 mA h g。与传统方法相比,该技术简单、经济且环保。它为回收SLFP材料提供了一种有效途径。