Wang Mengmeng, Liu Kang, Yu Jiadong, Zhang Qiaozhi, Zhang Yuying, Valix Marjorie, Tsang Daniel C W
Department of Civil and Environmental Engineering The Hong Kong Polytechnic University Hung Hom Kowloon Hong Kong China.
Research Centre for Environmental Technology and Management The Hong Kong Polytechnic University Hung Hom Kowloon Hong Kong China.
Glob Chall. 2023 Feb 5;7(3):2200237. doi: 10.1002/gch2.202200237. eCollection 2023 Mar.
In the recycling of retired lithium-ion batteries (LIBs), the cathode materials containing valuable metals should be first separated from the current collector aluminum foil to decrease the difficulty and complexity in the subsequent metal extraction. However, strong the binding force of organic binder polyvinylidene fluoride (PVDF) prevents effective separation of cathode materials and Al foil, thus affecting metal recycling. This paper reviews the composition, property, function, and binding mechanism of PVDF, and elaborates on the separation technologies of cathode material and Al foil (e.g., physical separation, solid-phase thermochemistry, solution chemistry, and solvent chemistry) as well as the corresponding reaction behavior and transformation mechanisms of PVDF. Due to the characteristic variation of the reaction systems, the dissolution, swelling, melting, and degradation processes and mechanisms of PVDF exhibit considerable differences, posing new challenges to efficient recycling of spent LIBs worldwide. It is critical to separate cathode materials and Al foil and recycle PVDF to reduce environmental risks from the recovery of retired LIBs resources. Developing fluorine-free alternative materials and solid-state electrolytes is a potential way to mitigate PVDF pollution in the recycling of spent LIBs in the EV era.
在退役锂离子电池(LIBs)的回收利用中,应首先将含有有价金属的正极材料与集流体铝箔分离,以降低后续金属提取的难度和复杂性。然而,有机粘结剂聚偏氟乙烯(PVDF)的结合力很强,阻碍了正极材料与铝箔的有效分离,从而影响金属回收。本文综述了PVDF的组成、性质、功能和结合机理,阐述了正极材料与铝箔的分离技术(如物理分离、固相热化学、溶液化学和溶剂化学)以及PVDF相应的反应行为和转化机理。由于反应体系的特性变化,PVDF的溶解、溶胀、熔融和降解过程及机理存在显著差异,给全球废旧LIBs的高效回收带来了新的挑战。分离正极材料和铝箔并回收PVDF对于降低退役LIBs资源回收带来的环境风险至关重要。开发无氟替代材料和固态电解质是减轻电动汽车时代废旧LIBs回收中PVDF污染的潜在途径。