废旧锂离子电池正极材料选择性回收锂研究现状

    Research Status of Selective Recovery of Lithium from Cathode Materials of Spent Lithium-ion Batteries

    • 摘要: 近年来,随着新能源汽车的兴起和快速发展,预计2025年后大量锂电池将面临报废。从废旧锂离子电池中回收有价金属可有效减少废旧锂电池对环境的污染并且可以实现其资源的循环利用,缓减因锂、钴及镍能源金属使用量激增导致的供需紧张。废旧锂电池正极材料的选择性提锂可实现锂资源的短流程回收,而且有利于后续钴、镍高价能源金属分离提取。因此近年来关于从废旧锂离子电池中选择性提锂的研究备受关注。本文系统梳理了当下多种回收体系选择性提锂工艺研究,包括高温熔炼、热还原法和盐化焙烧法的火法冶金工艺,无机酸浸出、有机酸浸出、氧化浸出和复合浸出的湿法冶金技术。并从环保、浸出效率、能耗、工艺可行性等方面探讨了不同工艺的优缺点。最后,对从废旧锂离子电池高效回收锂的发展进行了展望。

       

      Abstract: In recent years, with the rise and rapid development of new energy vehicles (EV), it is expected that a large number of lithium batteries will be scraped and disposed after 2025. Recycling valuable metals from spent lithium ion batteries can effectively reduce the environmental pollution of spent lithium batteries and realize the recycling of its resources, reducing the supply and demand conflict caused by the surge in the use of energy metals such as Li, Co and Ni. Selective lithium extraction from spent lithium-ion battery cathode materials can achieve short-flow recovery of lithium resources, and is conducive to the subsequent separation and extraction of cobalt and nickel high-value energy metals. Therefore, in recent years, the research on the selective extraction of lithium from spent lithium-ion batteries has attracted a lot of attentions. In this paper, we systematically sorted out the current research on selective lithium extraction by various recycling systems, including pyro-metallurgical processes such as high temperature smelting, thermal reduction and salting and roasting, and hydrometallurgical technologies of inorganic acid leaching, organic acid leaching, oxidative leaching et al. The advantages and disadvantages of different processes are also discussed in terms of environmental protection, leaching efficiency, energy consumption, and process feasibility. Finally, the development of efficient recovery of lithium from used lithium-ion batteries is prospected.

       

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