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Efficient and economical recovery of lithium, cobalt, nickel, manganese from cathode scrap of spent lithium-ion batteries

机译:从废旧锂离子电池的阴极废料中高效,经济地回收锂,钴,镍,锰

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A combined process was presented to recover valuable metals from lithium nickel cobalt manganese (NCM) cathodes of spent lithium-ion batteries. In this process, the cathode scrap was first roasted with carbonaceous reductant, and then carbonation water leaching was employed to selectively extract Li from the roasted cathodes. Finally, the obtained residue was leached in sulfuric acid solution to recover Co, Ni and Mn. A systematic investigation combining thermodynamic analysis, leaching experiments and characterization was conducted to explore the effect of operating conditions and leaching mechanism. The results indicate that the leaching of Li is significantly improved by injecting of CO2 into the leaching system, and more than 80% of Li can be leached within 10 min at a low liquid-solid ratio. High-quality Li2CO3 can be prepared from the leachate by direct evaporation. More than 96% of Ni, Co and Mn are extracted without adding reductant under the conditions of a H2SO4 dosage of 1.15 times the theoretical value, a time of 2.5 h, a temperature of 55 degrees C and a liquid-solid ratio of 3.5 mL g(-1). The acid leaching process is more efficient and economical, which is ascribed to the transformation of the low-valence states of metals with high activity after reduction roasting. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种从废锂离子电池的锂镍钴锰(NCM)阴极中回收有价金属的联合工艺。在此过程中,首先用碳质还原剂焙烧阴极废料,然后采用碳酸水浸出法从焙烧的阴极中选择性提取锂。最后,将获得的残余物浸入硫酸溶液中以回收Co,Ni和Mn。结合热力学分析,浸出实验和表征进行了系统研究,以探讨操作条件和浸出机理的影响。结果表明,通过向浸出系统中注入CO2可以显着改善Li的浸出,并且可以在10分钟内以低液固比浸出80%以上的Li。可以通过直接蒸发从渗滤液中制备高质量的Li2CO3。在H2SO4用量为理论值的1.15倍,时间为2.5小时,温度为55摄氏度,液固比为3.5毫升的条件下,无需添加还原剂即可提取超过96%的镍,钴和锰。 g(-1)。酸浸工艺更有效,更经济,这归因于还原焙烧后具有高活性的金属的低价态的转变。 (C)2018 Elsevier Ltd.保留所有权利。

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