生命周期评估
温室气体
电池(电)
供应链
电
持续性
环境科学
环境影响评价
环境分析
废物管理
市电
工业生态学
锂(药物)
环境经济学
业务
生产(经济)
工程类
化学
生态学
内分泌学
色谱法
量子力学
医学
生物
电气工程
电压
物理
功率(物理)
营销
经济
宏观经济学
作者
Michael L. Machala,Xi Chen,Samantha Bunke,G. A. Forbes,Akarys Yegizbay,Jacques A. de Chalendar,Inês L. Azevedo,Sally M. Benson,William A. Tarpeh
标识
DOI:10.1038/s41467-025-56063-x
摘要
Abstract Recycling lithium-ion batteries (LIBs) can supplement critical materials and improve the environmental sustainability of LIB supply chains. In this work, environmental impacts (greenhouse gas emissions, water consumption, energy consumption) of industrial-scale production of battery-grade cathode materials from end-of-life LIBs are compared to those of conventional mining supply chains. Converting mixed-stream LIBs into battery-grade materials reduces environmental impacts by at least 58%. Recycling batteries to mixed metal products instead of discrete salts further reduces environmental impacts. Electricity consumption is identified as the principal contributor to all LIB recycling environmental impacts, and different electricity sources can change greenhouse gas emissions up to five times. Supply chain steps that precede refinement (material extraction and transport) contribute marginally to the environmental impacts of circular LIB supply chains (<4%), but are more significant in conventional supply chains (30%). This analysis provides insights for advancing sustainable LIB supply chains, and informs optimization of industrial-scale environmental impacts for emerging battery recycling efforts.
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