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Effective leaching and extraction of valuable metals from electrode material of spent lithium-ion batteries using mixed organic acids leachant

机译:用混合有机酸杂露,用锂离子电池电极材料的有效浸出和提取有价值金属

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摘要

The present work focuses on simultaneous recycling of Li and Co from crushed products of mixed electrode materials using mixed organic acids, in which benzenesulfonic acid and formic acid were cooperatively used as the leaching reagents. Results show that the optimal leaching efficiency of 97% Co and 99% Li were obtained under the conditions of 13 mol/L benzenesulfonic acid, 1.5 mol/L formic acid, a solid to liquid (S/L) ratio of 30 g/L, and 40 min reaction time at 50 degrees C. Meanwhile, the leaching of Li and Co fits well to logarithmic rate model with apparent activation energy of 32.7 and 47.0 kJ/mol in this given leaching system, respectively. Besides, cobalt was directly recovered from the leach liquor as pure cobalt benzene sulfonic with the recovery efficiency of 99%, and lithium can be entirely precipitated by adding phosphoric acid. Further, the reaction mechanism involves the leaching-hydrating-complexing model of LiCoO2 particles was proposed based on the dissolution behavior of metals and then verified by morphological and phase characterization (i.e. FT-IR, XRD and SEM-EDS) of the recycling product. The whole process is found to be effective and sustainable for recovery of Li, Co and graphite from mixed industrial crushing product of spent LIBs. (C) 2019 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:本工作侧重于使用混合有机酸同时回收利用混合电极材料的碎片,其中苯磺酸和甲酸是合作用作浸出试剂。结果表明,在13mol / L苯磺酸,1.5mol / L甲酸,固体含量为30克/升的液体条件下获得97%Co和99%Li的最佳浸出效率。同时,40℃的40分钟反应时间,Li和Co的浸出分别适用于该给定浸出系统中具有32.7和47.0kJ / mol的表观活化能量的对数率模型。此外,通过纯钴苯磺酸溶液直接从浸出液中回收钴,通过加入磷酸可以完全沉淀锂。此外,基于金属的溶解行为,提出了反应机制涉及LiCoO2颗粒的浸出水合络合模型,然后通过再循环产品的形态和相表征(即FT-IR,XRD和SEMEDS)验证。发现整个过程是有效和可持续的,以便从废诵的混合工业破碎产品中恢复李,共同和石墨。 (c)2019年韩国工程化学学会。 elsevier b.v出版。保留所有权利。

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