杂质
原材料
电池(电)
生产(经济)
软件部署
工艺工程
废物管理
材料科学
阴极
环境科学
资源回收
质量(理念)
再生(生物学)
分离(统计)
可持续生产
纳米技术
分离法
电流(流体)
作者
Wei Li,Qingyang Yin,Zheng Chen
标识
DOI:10.1021/acsenergylett.5c03378
摘要
Direct recycling offers a more sustainable and energy-efficient alternative to conventional metallurgical methods for treating end-of-life lithium-ion batteries (LIBs). However, the large-scale deployment of direct regeneration is limited by its low tolerance to impurities, making the production of high-purity feedstocks and impurity management essential for viability. Drawing on insights into how impurities affect cathode regeneration, this Perspective discusses current and emerging separation and purification technologies and delineates the remaining gap to the mass production of high-quality feedstocks. We propose integrated, high-efficiency approaches that elevate feedstock quality and broaden impurity control across the entire workflow, positioning impurity management in both preprocessing and regeneration as being essential to the economic and environmental performance of direct recycling. The result is a research roadmap to enable scalable, sustainable, and cost-effective battery recycling practices.
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