Progress, challenges, and prospects of spent lithium-ion batteries recycling: A review

IF 14 1区 化学 Q1 CHEMISTRY, APPLIED 能源化学 Pub Date : 2023-10-19 DOI:10.1016/j.jechem.2023.10.012
Pengwei Li , Shaohua Luo , Lin Zhang , Qiuyue Liu , Yikai Wang , Yicheng Lin , Can Xu , Jia Guo , Peam Cheali , Xiaoning Xia
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引用次数: 1

Abstract

The recycling and reutilization of spent lithium-ion batteries (LIBs) have become an important measure to alleviate problems like resource scarcity and environmental pollution. Although some progress has been made, battery recycling technology still faces challenges in terms of efficiency, effectiveness and environmental sustainability. This review aims to systematically review and analyze the current status of spent LIB recycling, and conduct a detailed comparison and evaluation of different recycling processes. In addition, this review introduces emerging recycling techniques, including deep eutectic solvents, molten salt roasting, and direct regeneration, with the intent of enhancing recycling efficiency and diminishing environmental repercussions. Furthermore, to increase the added value of recycled materials, this review proposes the concept of upgrading recycled materials into high value-added functional materials, such as catalysts, adsorbents, and graphene. Through life cycle assessment, the paper also explores the economic and environmental impacts of current battery recycling and highlights the importance that future recycling technologies should achieve a balance between recycling efficiency, economics and environmental benefits. Finally, this review outlines the opportunities and challenges of recycling key materials for next-generation batteries, and proposes relevant policy recommendations to promote the green and sustainable development of batteries, circular economy, and ecological civilization.

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废锂离子电池回收研究进展、挑战与展望
废旧锂离子电池的回收再利用已成为缓解资源短缺和环境污染问题的重要措施。尽管取得了一些进展,但电池回收技术在效率、有效性和环境可持续性方面仍然面临挑战。本文旨在系统地回顾和分析废LIB回收的现状,并对不同的回收工艺进行详细的比较和评价。此外,本文还介绍了新兴的回收技术,包括深共晶溶剂、熔盐焙烧和直接再生,旨在提高回收效率和减少对环境的影响。此外,为了提高回收材料的附加值,本文提出了将回收材料升级为高附加值功能材料的概念,如催化剂、吸附剂和石墨烯。通过生命周期评估,本文还探讨了当前电池回收的经济和环境影响,并强调了未来回收技术应在回收效率、经济和环境效益之间取得平衡的重要性。最后,本文概述了下一代电池关键材料回收利用的机遇和挑战,并提出了相关政策建议,以促进电池绿色可持续发展、循环经济和生态文明。
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CiteScore
23.60
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发文量
2875
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