Zhang Nianji, Li Huan, Ye Chao, Qiao Shi-Zhang
School of Chemical Engineering, the University of Adelaide, Adelaide, SA, 5005, Australia.
Adv Mater. 2025 Jul;37(29):e2504380. doi: 10.1002/adma.202504380. Epub 2025 Apr 29.
Upcycling is regarded as a sustainable and promising recycling solution for spent lithium-ion batteries (LIBs). However, current upcycling strategies such as converting Ni-lean to Ni-rich cathodes struggle to change the composition of the spent cathodes to meet the diverse market demands. In addition, the commonly employed molten-salts method requires tens of hours of high-temperature treatment, restricting its sustainability. Herein, this study reports an efficient, flexible dual-directional upcycling strategy to upcycle a broad family of layered oxide cathodes into fresh LiNiCoMnO (NCM) cathodes with tailored Ni-contents-either increased or decreased-in just 4 h via mechanical homogenization pretreatment. This study confirms that the bulk diffusion of transition metals (TMs) is the rate-determining step in the resynthesis process, and the mechanical homogenization can shorten the diffusion pathway of TMs, thus reducing the sintering duration effectively. The as-upcycled NCM cathodes can deliver electrochemical performance on par with commercial counterparts. Notably, a systematic technoeconomic analysis shows that upcycling spent LiCoO into NCM622 can yield a profit up to 35 US$/kg, 30% higher than the conventional acid-leaching resynthesis approach. This work provides an energy-saving, widely adaptable, flexible, and cost-efficient method for regenerating spent cathode materials, paving the way for the sustainable recycling of LIBs.
升级循环被认为是一种可持续且有前景的废旧锂离子电池(LIBs)回收解决方案。然而,当前诸如将贫镍阴极转化为富镍阴极的升级循环策略难以改变废旧阴极的成分以满足多样化的市场需求。此外,常用的熔盐法需要数十小时的高温处理,限制了其可持续性。在此,本研究报告了一种高效、灵活的双向升级循环策略,通过机械均质化预处理,仅需4小时就能将多种层状氧化物阴极升级循环为具有定制镍含量(可增加或减少)的新鲜LiNiCoMnO(NCM)阴极。本研究证实,过渡金属(TMs)的体扩散是再合成过程中的速率决定步骤,而机械均质化可以缩短TMs的扩散路径,从而有效减少烧结时间。升级循环后的NCM阴极能够提供与商业同类产品相当的电化学性能。值得注意的是,一项系统的技术经济分析表明,将废旧LiCoO升级循环为NCM622可产生高达35美元/千克的利润,比传统的酸浸再合成方法高出30%。这项工作为再生废旧阴极材料提供了一种节能、适应性广、灵活且经济高效的方法,为LIBs的可持续回收铺平了道路。