离子液体介导的废电池金属回收

Ruiyong Chen
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引用次数: 0

摘要

正在为实现运输部门的电气化作出巨大努力。因此,为处理大量废旧电池,必须尽快开发新一代回收技术。本文讨论了离子液体和离子冶金的发展前景,它们可以克服传统回收方法的一些问题。离子液体介导的废电池金属回收代表了一种可持续发展的战略,具有新的基础化学特征。离子液体的再生和再利用的机会是有希望实现成本平衡的回收过程。离子液体独特的化学环境也使得耦合电化学过程和升级回收的发展成为可能。未来的发展需要对持续运作和整体过程效率、技术经济和环境方面进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ionic liquids-mediated recovery of metals from spent batteries

Tremendous efforts are being made toward electrification of the transport sector. Accordingly, next-generation recycling technologies to tackle the large volumes of spent batteries must be urgently innovated. Herein, ionic liquids and the promising ionometallurgy that can overcome some issues of traditional recycling methods are discussed. Ionic liquids-mediated recovery of metals from spent batteries represents a sustainable strategy, featured with new fundamental chemistries. The opportunities for regeneration and reuse of ionic liquids are promising toward a cost-levelized recycling process. The unique chemical environment of ionic liquids also allows the development of coupled electrochemical procedures and upcycling. Future development requires the assessment of continuous operation and holistic process efficiency, technoeconomic and environmental aspects.

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