Li Yanhong, Luo Guosheng, Wang Haochen, Niu Hua
Graduate Business School, UCSI University, Kuala Lumpur, Malaysia.
College of Chemistry, Beijing University of Chemical Technology, Beijing, People's Republic of China.
Environ Technol. 2025 Sep;46(21):4213-4226. doi: 10.1080/09593330.2025.2499973. Epub 2025 May 7.
With the accelerated depletion of non-renewable resources and increased demand for lithium batteries, green recycling of lithium has become a key issue nowadays. In this study, the effects of the mass ratio of potassium persulfate to the active material of battery cathode material, roasting temperature, time, liquid-solid ratio and leaching time on the leaching rate of lithium, cobalt, nickel and manganese were investigated. For lithium-cobalt oxide battery materials, the optimal conditions were a mass ratio of K₂S₂O₇ to LiCoO₂ of 2:3, a roasting temperature of 700 °C for 60 min, and a lithium leaching rate of 98.51% and a selective leaching rate of 99.86%. For the ternary material NCM523, the optimal conditions were 1:2 mass ratio, and the lithium leaching rate reached 98.97%. The method has a positive corporate environmental impact by reducing the need for hazardous chemicals, lowering waste and operating costs, and avoiding harmful emissions. It is scalable and cost-effective and meets the needs of the battery recycling industry for environmentally friendly resource recovery. The KSO₇roasting-water leaching process proposed in this study effectively overcomes the problems of acid depletion and environmental pollution in the traditional recovery process, and provides a green and sustainable solution for the efficient recovery of lithium in lithium batteries in the future.
随着不可再生资源的加速枯竭以及对锂电池需求的增加,锂的绿色回收已成为当今的关键问题。本研究考察了过硫酸钾与电池正极材料活性物质的质量比、焙烧温度、时间、液固比和浸出时间对锂、钴、镍和锰浸出率的影响。对于锂钴氧化物电池材料,最佳条件为K₂S₂O₇与LiCoO₂的质量比为2:3,焙烧温度700℃、时间60分钟时,锂浸出率为98.51%,选择性浸出率为99.86%。对于三元材料NCM523,最佳条件为质量比1:2,锂浸出率达到98.97%。该方法通过减少对危险化学品的需求、降低废物和运营成本以及避免有害排放,对企业环境产生积极影响。它具有可扩展性且成本效益高,满足了电池回收行业对环境友好型资源回收的需求。本研究提出的KSO₇焙烧-水浸工艺有效克服了传统回收工艺中酸耗竭和环境污染的问题,为未来高效回收锂电池中的锂提供了一种绿色可持续的解决方案。