采用高温放电法预处理锂离子电池以实现安全回收

Arpita Mondal, Yuhong Fu, Wei Gao, C. Mi
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摘要

向电动汽车的不断过渡是锂离子电池(LIB)需求呈指数级增长的一个主要因素。为了支持采矿业,确保有足够的原材料和避免供应中断,以便有足够的原材料生产锂离子电池,人们在回收电池材料方面做出了巨大努力。然而,使用寿命到期并送去回收的锂电池可能仍有一些能量,在处理和加工过程中可能会造成危险。因此,在拆解和粉碎 LIB 之前对其进行放电预处理非常重要,尤其是在不使用火法回收的情况下。为此目的,在导电溶液中进行电化学放电已得到普遍研究和实施,但其有效性还有待充分验证。非电化学放电作为一种潜在的更清洁、更高效的放电技术也同时得到了研究。本文介绍了一种非电化学放电工艺,即在回收利用之前完全耗尽废旧电池中的能量。本文分析了锂离子电池在放电过程中的行为以及在不同温度下完全放电后的剩余能量。实验结果表明,在较高温度下对电池完全放电会导致电池中的剩余能量减少。这一结果对于安全、环保地回收利用废旧锂电池具有重要意义,强调了安全、环保的回收利用必须与成本效益高、可持续的解决方案齐头并进。
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Pretreatment of Lithium Ion Batteries for Safe Recycling with High-Temperature Discharging Approach
The ongoing transition toward electric vehicles is a major factor in the exponential rise in demand for lithium-ion batteries (LIBs). There is a significant effort to recycle battery materials to support the mining industry in ensuring enough raw materials and avoiding supply disruptions, so that there will be enough raw materials to produce LIBs. Nevertheless, LIBs that have reached the end of their useful lives and are sent for recycling may still have some energy left in them, which could be dangerous during handling and processing. Therefore, it is important to conduct discharge pretreatment of LIBs before dismantling and crushing them, especially in cases where pyrometallurgical recycling is not used. Electrochemical discharge in conducting solutions has been commonly studied and implemented for this purpose, but its effectiveness has yet to be fully validated. Non-electrochemical discharge has also been researched as a potentially cleaner and more efficient discharge technology at the same time. This article presents a non-electrochemical discharge process by completely draining the energy from used batteries before recycling. A comprehensive investigation of the behavior of LIBs during discharge and the amount of energy remaining after fully discharging the battery at different temperatures is analyzed in this work. According to the experimental findings, completely discharging the battery at higher temperatures results in a reduced amount of residual energy in the battery. This outcome holds great importance in terms of safe and environmentally friendly recycling of used LIBs, emphasizing that safety and environmentally friendly recycling must go hand in hand with a cost-effective and sustainable solution.
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