从废旧锂离子电池中回收有价值的材料制成催化剂:方法、应用和表征

Hao-Long Sun, Yun-Peng Xu, Lian Ding, Yu Gu, Jianfeng Li
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引用次数: 0

摘要

锂离子电池(LIB)是目前最流行的储能技术,其广泛应用不可避免地会导致大量废旧电池在其生命周期结束时堆积起来。从环境保护和资源可持续性的角度来看,回收利用是有效管理报废锂离子电池并回收其中有价值元素的重要策略。与催化密切相关的湿法冶金是实现废锂电池高价值利用的一种相对成熟的策略。在本综述中,我们的重点是水冶回收领域中催化相互关联的主题。具体来说,我们将深入探讨催化在锂电池回收过程中以及在各种催化应用中可持续利用锂电池提取材料方面所发挥的关键作用。这一重点探索旨在深入了解催化与更广泛的锂电池回收之间错综复杂的关系,阐明催化在实现环境可持续性和功能材料再利用方面的关键作用。此外,我们还重点介绍了以表面敏感增强拉曼光谱为代表的先进表征技术,以便从根本上了解催化剂的反应机理,进而为更合理的催化剂设计提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recycling valuable materials from the spent lithium ion batteries to catalysts: methods, applications, and characterization
As the prevailing technology for energy storage, the extensive adoption of lithium-ion batteries (LIBs) inevitably results in the accumulation of numerous spent batteries at the end of their lifecycle. From the standpoints of environmental protection and resource sustainability, recycling emerges as an essential strategy to effectively manage end-of-life LIBs and reclaim valuable elements within them. Hydrometallurgy, closely intertwined with catalysis, stands as a relatively mature strategy for achieving high-value utilization of spent LIBs. In this review, our emphasis is placed on the interconnected themes of catalysis within the realm of hydrometallurgical recycling. Specifically, we delve into the crucial role that catalysis plays in both the recycling process of LIBs and the sustainable utilization of their extracted materials in various catalytic applications. This focused exploration aims to contribute insights into the intricate relationship between catalysis and the broader context of LIB recycling, shedding light on its pivotal role in achieving both environmental sustainability and functional material repurposing. Moreover, we highlight advanced characterization techniques, represented by surface-sensitive enhanced Raman spectroscopy, to fundamentally understand the reaction mechanism of catalysts, which, in turn, would inform more rational catalyst designs.
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