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Recovery of valuable metals from cathodic active material of spent lithium ion batteries: Leaching and kinetic aspects

机译:从废锂离子电池的阴极活性材料中回收有价金属:浸出和动力学方面

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摘要

This work is focussed on the processing of cathodic active material of spent lithium ion batteries (LIBs) to ensure resource recovery and minimize environmental degradation. The sulfuric acid leaching of metals was carried out for the recovery of all the valuable metals including nickel and manganese along with the frequently targeted metals like lithium and cobalt. The process parameters such as acid concentration, pulp density, time and temperature for the leaching of metals from the cathode powder containing 35.8% Co, 6.5% Li, 11.6% Mn and 10.06% Ni, were optimized. Results show the optimized leach recovery of 93.4% Li, 66.2% Co, 96.3% Ni and 50.2% Mn when the material was leached in 1 M H_2SO_4 at 368 K and 50 g/L pulp density for 240 min. The need of a reductant for improved recovery of cobalt and manganese has been explained by the thermodynamic analysis (Eh-pH diagram) for these metals. Leaching of the valuable metals was found to follow the logarithmic rate law controlled by surface layer diffusion of the lixiviant reacting with the particles. The mode of leaching of the metals from the spent LIBs was further examined by chemical analysis of the samples at various stage of processing which was further corroborated by characterizing the untreated sample and the leach residues by XRD phase identification and the SEM-EDS studies.
机译:这项工作的重点是废锂离子电池(LIB)的阴极活性材料的处理,以确保资源回收并最大程度地减少环境恶化。进行金属的硫酸浸提是为了回收所有有价值的金属,包括镍和锰,以及经常针对的金属,如锂和钴。优化了工艺参数,例如酸浓度,纸浆密度,时间和温度,用于从含35.8%Co,6.5%Li,11.6%Mn和10.06%Ni的阴极粉末中浸出金属。结果表明,当该材料在368 K和50 g / L纸浆密度下浸入1 M H_2SO_4中240分钟时,最佳浸出回收率为93.4%Li,66.2%Co,96.3%Ni和50.2%Mn。这些金属的热力学分析(Eh-pH图)解释了需要还原剂来改善钴和锰的回收率。发现有价值金属的浸出遵循对数速率定律,该对数速率定律由浸滤剂与颗粒反应的表面层扩散控制。通过在处理的各个阶段对样品进行化学分析,进一步检查了从废旧LIB中浸出金属的方式,通过XRD相鉴定和SEM-EDS研究表征了未经处理的样品和浸出残留物,进一步证实了这一点。

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