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采用亚硫酸铵-还原氨浸法从废锂离子电池中回收有价金属。

Recycling valuable metals from spent lithium-ion batteries by ammonium sulfite-reduction ammonia leaching.

机构信息

School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.

School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China; Jiangxi Key Laboratory of Mining & Metallurgy Environmental Pollution Control, Ganzhou 341000, China.

出版信息

Waste Manag. 2019 Jun 15;93:153-161. doi: 10.1016/j.wasman.2019.04.039. Epub 2019 May 25.

Abstract

The cathode powder is obtained by wet crushing and screening, and the leaching behavior of Li, Ni, Co, Cu, and Al is then investigated using a ternary leaching system composed of ammonia, ammonium sulfite, and ammonium bicarbonate. Ammonium sulfite is necessary as a reductant to improve the Li, Ni, and Co leaching efficiencies, and ammonium bicarbonate acts as a buffer in ammoniacal solutions. A detailed understanding of the selective leaching process is obtained by investigating the effects of parameters such as the leaching reagent composition, leaching time (0-300 min), temperature (40-90 °C), solid-to-liquid ratio (10-50 g/L), and agitation speed (300-700 rpm). It is found that Ni and Cu could be almost fully leached out, while Al is hardly leached and Li(60.53%) and Co(80.99%) exhibit a moderate leaching efficiency. The results show that the optimum solid-liquid ratio of the leaching system is 20 g/L, and the increase of temperature and reaction time is beneficial to metal leaching. The leaching kinetics analysis shows that the chemical reaction control explains the leaching behavior of Li, Ni, and Co well. Therefore, this work may be beneficial for further recycling valuable metals from leaching solutions by introducing an extraction agent.

摘要

阴极粉末通过湿磨和筛选获得,然后使用由氨、亚硫酸铵和碳酸氢铵组成的三元浸出体系研究 Li、Ni、Co、Cu 和 Al 的浸出行为。亚硫酸铵作为还原剂是必需的,以提高 Li、Ni 和 Co 的浸出效率,碳酸氢铵在氨溶液中起缓冲作用。通过研究浸出试剂组成、浸出时间(0-300 分钟)、温度(40-90°C)、固液比(10-50 g/L)和搅拌速度(300-700 rpm)等参数的影响,可以获得对选择性浸出过程的详细了解。结果发现 Ni 和 Cu 几乎可以完全浸出,而 Al 几乎不浸出,Li(60.53%)和 Co(80.99%)表现出中等的浸出效率。结果表明,浸出体系的最佳固液比为 20 g/L,温度和反应时间的增加有利于金属浸出。浸出动力学分析表明,化学反应控制很好地解释了 Li、Ni 和 Co 的浸出行为。因此,这项工作可能有助于通过引入萃取剂从浸出液中进一步回收有价值的金属。

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