利用机械化学方法回收废旧锂离子电池

Mengmeng Wang , Kang Liu , Jiadong Yu , Cong-Cong Zhang , Zhiyuan Zhang , Quanyin Tan
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引用次数: 12

摘要

在全球可持续发展的目标下,新能源汽车产业发展迅速,废旧锂离子电池(LIBs)大量涌现。lib的循环利用是新能源产业可持续发展的关键,也符合循环经济的理念。而关键金属的绿色开采是其发展的核心部分。新兴的机械化学技术作为传统火法冶金和湿法冶金的替代技术,具有操作简单、灵活、处理时间短等优点,为废旧lib中关键金属的高效、绿色回收提供了新的途径。本文综述了从废lib中回收关键金属的机械化学技术的最新进展。在大量实践的基础上,构建了机械化学活化、有机反应、无机反应、氧化还原反应、气固反应、固相合成的框架。这些实践证明,机械化学技术可以为回收废lib中的关键金属提供更环保、更可持续的解决方案。在常温常压下,这些金属可以转化为高价值的金属产品,从而有效地回收关键金属,显著减少废物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recycling spent lithium-ion batteries using a mechanochemical approach

Recycling spent lithium-ion batteries using a mechanochemical approach

Under the goal of global sustainable development, the new energy vehicle industry is evolving rapidly, leading to a proliferation of spent lithium-ion batteries (LIBs). The recycling of LIBs is key to the sustainable development of the new energy industry, which is consistent with the concept of circular economy as well. And the green extraction of critical metals is the core part of the development. As an alternative to traditional pyrometallurgy and hydrometallurgy, emerging mechanochemical technology provides a new approach for high efficiency and green recycling of critical metals from spent LIBs, as it has the advantages of easy operation, flexibility, and short processing time. This article reviews the state of the art of mechanochemical technology in the recycling of critical metals from spent LIBs. Based on numerous practices, a framework including mechanochemical activation, organic reaction, inorganic reaction, redox reaction, gas-solid reaction, and solid-phase synthesis was constructed. These practices have proved that mechanochemical technology can provide a greener and more sustainable solution for recycling critical metals from spent LIBs. The metals can be transformed into high-value metal products at room temperature and under ordinary pressure, leading to efficient recycling of critical metals and significant reduction of wastes.

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