Li Chongyu, Jin Jianjiao, Yuan Zhang, Zhang Chenyun, Wu Liangqin, Wang Chu
Shazhou Professional Institute of Technology, No.1 FuXin Road, Zhangjiagang, 215600, PR China.
Wuxi Vocational Institute of Arts & Technology, Yixing, 214206, China.
ChemistryOpen. 2025 Apr;14(4):e202400258. doi: 10.1002/open.202400258. Epub 2024 Dec 6.
As a result of the swift surge in the adoption of electric vehicles, the quantity of spent lithium-ion power batteries has been growing at an exponential rate. Improper handling of these batteries can lead to the waste of strategic metal resources and pose risks to the environment and human health. Without doubt, it is essential to scientifically recover and reuse these spent power batteries, particularly by recovering positive electrode materials. Currently, there are several methods for recovering positive electrode materials, including pyrometallurgy, hydrometallurgy, bioleaching, and deep eutectic solvents (DESs) leaching. This review concetrated on the emerging technology of DESs leaching for positive electrode materials in spent lithium-ion battery. It provided an overview of the latest advancements in DESs leaching, considering factors such as acidity, reducibility, and coordination of DESs. The current technical status was analyzed and discussed, while also addressing the challenges and prospects for the development of DESs recovery in spent Li-ion power batteries. This work aims to offer practical guidance and serve as a foundation for additional studies and widespread implementation of DESs leaching for positive electrode materials.
由于电动汽车的迅速普及,废旧锂离子动力电池的数量呈指数级增长。对这些电池处理不当会导致战略金属资源的浪费,并对环境和人类健康构成风险。毫无疑问,科学回收和再利用这些废旧动力电池至关重要,尤其是回收正极材料。目前,有多种回收正极材料的方法,包括火法冶金、湿法冶金、生物浸出和深共晶溶剂(DESs)浸出。本综述聚焦于废旧锂离子电池正极材料的DESs浸出这一新兴技术。它概述了DESs浸出的最新进展,考虑了诸如DESs的酸度、还原性和配位等因素。分析和讨论了当前的技术现状,同时也探讨了废旧锂离子动力电池中DESs回收发展面临的挑战和前景。这项工作旨在提供实际指导,并为进一步研究以及广泛应用DESs浸出正极材料奠定基础。