Guo Mengwei, Zhang Bo, Gao Mingyuan, Deng Rongrong, Zhang Qibo
Key Laboratory of Ionic Liquids Metallurgy, Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming, 650093, Yunnan, China.
Key Laboratory of Ionic Liquids Metallurgy, Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming, 650093, Yunnan, China.
J Environ Manage. 2024 Mar;354:120454. doi: 10.1016/j.jenvman.2024.120454. Epub 2024 Feb 26.
Mn-containing Li-ion batteries have become primary power sources for electronic devices and electric vehicles because of their high-energy density, extended cycle life, low cost, and heightened safety. In recent years, Li-ion batteries (LIBs) have undergone rapid updates, paralleling the swift advancement of the lithium battery industry, resulting in a growing accumulation of LIB scraps annually, necessitating comprehensive recovery strategies. This article reviews the recent progress in recovering spent Mn-containing LIBs (SM-LIBs), specifically focusing on LiMnO and ternary LiCoMnNiO (NCM). Initially, the study analyzes the current resource profile of SM-LIBs and elucidates their service mechanisms. Subsequently, the study explores the recovery of SM-LIBs, discussing various methods such as the hydrometallurgical approach, combined pyrolytic treatment-wet leaching process, bioleaching pathway, and electrochemical extraction. These discussions include recovery processes, reaction principles, and technological features. In addition, this study evaluates the potential applications of these recovery technologies, considering aspects such as complexity, economic viability, energy consumption, environmental sustainability, and scalability. Finally, it summarizes the challenges associated with the comprehensive recovery and resource utilization of SM-LIBs and offers insights into future directions.
含锰锂离子电池因其高能量密度、长循环寿命、低成本和高安全性,已成为电子设备和电动汽车的主要电源。近年来,锂离子电池(LIBs)经历了快速更新,与锂电池行业的迅速发展同步,导致每年LIBs废料的积累不断增加,因此需要全面的回收策略。本文综述了回收废旧含锰LIBs(SM-LIBs)的最新进展,特别关注LiMnO和三元LiCoMnNiO(NCM)。首先,该研究分析了SM-LIBs的当前资源概况,并阐明了它们的服役机制。随后,该研究探讨了SM-LIBs的回收,讨论了各种方法,如水冶法、热解处理-湿法浸出联合工艺、生物浸出途径和电化学提取。这些讨论包括回收过程、反应原理和技术特点。此外,本研究评估了这些回收技术的潜在应用,考虑了复杂性、经济可行性、能源消耗、环境可持续性和可扩展性等方面。最后,总结了SM-LIBs综合回收和资源利用面临的挑战,并对未来方向提出了见解。