Hantanasirisakul Kanit, Sawangphruk Montree
Centre of Excellence for Energy Storage Technology (CEST) Department of Chemical and Biomolecular Engineering School of Energy Science and Engineering Vidyasirimedhi Institute of Science and Technology Wangchan Valley Rayong 21210 Thailand.
Glob Chall. 2023 Jan 26;7(4):2200212. doi: 10.1002/gch2.202200212. eCollection 2023 Apr.
The rapidly increasing adoption of electric vehicles (EVs) worldwide is causing high demand for production of lithium-ion batteries (LIBs). Tremendous efforts have been made to develop different components of LIBs in addition to design of battery pack architectures as well as manufacturing processes to make better batteries with affordable prices. Nonetheless, sustainable use of LIBs relies on the availability and cost of rare metals, which are naturally concentrated in a few countries. In addition, toxic electrolytes used in LIBs pose concerns on environmental impacts if LIBs are not handled properly after decommissioned from EVs. Therefore, it is paramount to realize effective utilization of spent LIBs, where their remaining capacities can be reused in less demanding applications. Finally, electrode materials and other valuable components of LIBs can be recovered via recycling, completing their circular life cycle. In this review, available options of LIBs after their retirement from EV applications, including battery second use, repair of electrode materials by direct regeneration, and material recovery by hydrometallurgical or pyrometallurgical processes are discussed. Throughout the review, the discussion is based around current available technologies, their environmental impacts, and economic feasibility as well as provided examples of pilot and industrial scale adoption of the processes.
全球电动汽车(EV)的迅速普及导致对锂离子电池(LIB)生产的高需求。除了设计电池组架构以及制造工艺以生产价格合理的更好电池外,人们还付出了巨大努力来开发LIB的不同组件。尽管如此,LIB的可持续使用依赖于稀有金属的可用性和成本,而这些稀有金属自然集中在少数几个国家。此外,如果LIB从电动汽车退役后处理不当,其使用的有毒电解质会对环境造成影响。因此,实现对废旧LIB的有效利用至关重要,废旧LIB的剩余容量可在要求较低的应用中重复使用。最后,LIB的电极材料和其他有价值的组件可通过回收来获取,从而完成其循环生命周期。在本综述中,讨论了LIB从电动汽车应用中退役后的可用选择,包括电池二次使用、通过直接再生修复电极材料以及通过湿法冶金或火法冶金工艺回收材料。在整个综述中,讨论围绕当前可用技术、其环境影响、经济可行性以及所提供的工艺在试点和工业规模应用的示例展开。