Zha Yunchun, Li Yuyun, Fei Zitong, Fan Changyi, Meng Qi, Peng Xingyi, Dong Peng
Faculty of Metallurgy and Energy Engineering, National and Local Joint Engineering Laboratory for Lithium-ion Batteries and Materials Preparation Technology, Key Laboratory of Advanced Battery Materials of Yunnan Province, Kunming University of Science and Technology, Kunming, 650093, China.
Lithium Resources and Lithium Materials Key Laboratory of Sichuan Province, Chengdu, Sichuan, 610065, China.
Dalton Trans. 2024 Mar 19;53(12):5592-5600. doi: 10.1039/d3dt02971a.
The use of a carbon thermal reduction roasting method to recover lithium resources from spent lithium-ion batteries (S-LIBs) provides an important opportunity for recycling S-LIBs. The preferential extraction of Li reduction roasting has been widely studied; however, the extraction of Li from mixed cathode materials has been rarely reported. Herein, we propose a method based on carbon thermal reduction to preferentially extract Li from mixed cathode materials. It was confirmed that there are differences in carbon thermal reduction products at 700 °C-850 °C by the thermodynamic analysis of the carbon thermal reduction process. At the same time, the effects of factors such as roasting temperature, roasting time, and material ratio on Li leaching efficiency were investigated. The Li recovery rate reached 98.86% under the optimal conditions of holding at 750 °C for 4 h with a molar ratio of mixed cathode materials to graphite of 1 : 0.25. Recovered LiCO can be directly used as a lithium source for the regeneration of cathode materials. This study will provide new opportunities for the efficient recycling of spent lithium-ion batteries (S-LIB) mixtures.
采用碳热还原焙烧法从废旧锂离子电池中回收锂资源为废旧锂离子电池的回收利用提供了重要契机。锂还原焙烧的优先提取已得到广泛研究;然而,从混合正极材料中提取锂的研究鲜有报道。在此,我们提出一种基于碳热还原的方法,用于从混合正极材料中优先提取锂。通过对碳热还原过程的热力学分析证实,在700℃-850℃下碳热还原产物存在差异。同时,研究了焙烧温度、焙烧时间和物料比等因素对锂浸出效率的影响。在混合正极材料与石墨摩尔比为1:0.25、750℃保温4 h的最佳条件下,锂回收率达到98.86%。回收得到的碳酸锂可直接用作正极材料再生的锂源。本研究将为废旧锂离子电池混合物的高效回收提供新的机遇。