A Sustainable Complexation Leaching of Critical Metals from Spent Lithium-Ion Batteries by Glycine in a Neutral Solution

IF 1.5 4区 工程技术 Q3 METALLURGY & METALLURGICAL ENGINEERING
Jiajia Wu, Junmo Ahn, Jaeheon Lee
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Abstract

To reduce the environmental footprint of hydrometallurgical processing of black mass from spent lithium-ion batteries (LIBs), a green leaching system based on glycine and sodium metabisulfite (Gly-SMS) was proposed. The novel leaching system was validated using black mass from end-of-life batteries and manufacturing scrap from battery producers, representing the two dominant black mass types processed in the market. The leaching study demonstrated that the highest cobalt and lithium recoveries of 100% and 99.8% were achieved under optimal conditions. The leaching mechanism revealed that the dissolution of LiCoO2 in the Gly-SMS solution followed the shrinking core model. The apparent activation energies for cobalt and lithium were determined as 48.05 kJ/mol and 41.51 kJ/mol, respectively, indicating a surface chemical reaction controlling mechanism. The leachate was then processed by an acidification-precipitation technique with oxalic acid as the precipitant to remove cobalt. Glycine complexes with metal ions by zwitterionic ligand and recycles in the leaching-precipitation circuit, reducing the reagent cost. Compared to other studies, this leaching system has near-neutral operating conditions and is cost-effective, making it an economically viable alternative for treating cathode materials from spent LIBs.

Abstract Image

中性溶液中甘氨酸对废锂离子电池中关键金属的可持续络合沥滤作用
为了减少废旧锂离子电池(LIB)黑块水冶加工对环境的影响,提出了一种基于甘氨酸和焦亚硫酸钠(Gly-SMS)的绿色浸出系统。该新型浸出系统通过使用来自报废电池和电池生产商的制造废料(代表市场上处理的两种主要黑质类型)中的黑质进行验证。浸出研究表明,在最佳条件下,钴和锂的最高回收率分别达到了 100%和 99.8%。浸出机理显示,钴酸锂在 Gly-SMS 溶液中的溶解遵循收缩核心模型。钴和锂的表观活化能分别为 48.05 kJ/mol 和 41.51 kJ/mol,表明这是一种表面化学反应控制机制。然后,以草酸为沉淀剂,采用酸化沉淀技术处理浸出液,以去除钴。甘氨酸通过齐聚配体与金属离子络合,并在浸出-沉淀回路中循环使用,从而降低了试剂成本。与其他研究相比,该浸出系统的操作条件接近中性,且成本效益高,是处理废 LIB 阴极材料的经济可行的替代方法。
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来源期刊
Mining, Metallurgy & Exploration
Mining, Metallurgy & Exploration Materials Science-Materials Chemistry
CiteScore
3.50
自引率
10.50%
发文量
177
期刊介绍: The aim of this international peer-reviewed journal of the Society for Mining, Metallurgy & Exploration (SME) is to provide a broad-based forum for the exchange of real-world and theoretical knowledge from academia, government and industry that is pertinent to mining, mineral/metallurgical processing, exploration and other fields served by the Society. The journal publishes high-quality original research publications, in-depth special review articles, reviews of state-of-the-art and innovative technologies and industry methodologies, communications of work of topical and emerging interest, and other works that enhance understanding on both the fundamental and practical levels.
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