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通过激光诱导高温热冲击实现废旧锂离子电池阴极的高效回收利用。

Efficient recycling of spent Li-ion battery cathodes by laser-induced high-temperature thermal shock.

作者信息

Cao Ning, Zhang Yang, Gu Xin, Wu Mingbo

机构信息

Shandong Key Laboratory of Advanced Electrochemical Energy Storage Technologies, College of New Energy, State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East China), Qingdao, China.

College of Chemical Engineering, Qingdao University of Science & Technology, Qingdao, China.

出版信息

Nat Commun. 2025 Aug 4;16(1):7169. doi: 10.1038/s41467-025-62434-1.

Abstract

Environmental concerns over heavy metals in spent lithium-ion batteries (LIBs), coupled with the growing scarcity of metal resources, have heightened the need for efficient and cost-effective recycling of metals from spent cathodes. In this study, we propose a laser-induced high-temperature thermal shock strategy that rapidly separates cathode materials from Al foil in just seconds. The instantaneous thermal shock facilitates the reduction of refractory metal oxides and the decomposition of impurity layer, while simultaneously increasing the specific surface area and generating oxygen vacancies. This significantly enhances both the thermodynamics and kinetics of the subsequent leaching process. Leaching tests with 0.1 M HCl show that the efficiencies for Co, Ni, and Mn increase by 147.5%, 125.6%, and 140.0%, respectively, compared to untreated materials. Over 97% of the metals are recovered even using 0.5 M HCl. Here, we propose a laser strategy that is more economically viable and significantly reduces the environmental impact.

摘要

对废旧锂离子电池(LIBs)中重金属的环境担忧,再加上金属资源日益稀缺,使得从废旧阴极高效且经济地回收金属的需求更为迫切。在本研究中,我们提出了一种激光诱导高温热冲击策略,该策略能在短短几秒内迅速将阴极材料与铝箔分离。瞬间热冲击有助于难熔金属氧化物的还原和杂质层的分解,同时增加比表面积并产生氧空位。这显著增强了后续浸出过程的热力学和动力学。用0.1M盐酸进行的浸出试验表明,与未处理材料相比,钴、镍和锰的浸出效率分别提高了147.5%、125.6%和140.0%。即使使用0.5M盐酸,超过97%的金属也能被回收。在此,我们提出了一种更具经济可行性且能显著降低环境影响的激光策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb5d/12322134/e8be20dd7674/41467_2025_62434_Fig1_HTML.jpg

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