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Hydrometallurgical process for the recovery of metal values from spent lithium-ion batteries in citric acid media

机译:在柠檬酸介质中从废锂离子电池中回收金属价值的湿法冶金工艺

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In this paper, a hydrometallurgical process has been proposed to recover valuable metals from spent lithium-ion batteries in citric acid media. Leaching efficiencies as high as 97%, 95%, 94%, and 99% of Ni, Co, Mn, and Li were achieved under the optimal leaching experimental conditions of citric acid concentration of 2 mol L~(-1), leaching temperature of 80 ℃, leaching time of 90 min, liquid-solid ratio of 30 ml g~(-1), and 2 vol. % H_2O_2. For the metals recovery process, nickel and cobalt were selectively precipitated by dimethylglyoxime reagent and ammonium oxalate sequentially. Then manganese was extracted by Na-D2EHPA and the manganese-loaded D2EHPA was stripped with sulfuric acid. The manganese was recovered as MnSO_4 in aqueous phase and D2EHPA could be reused after saponification. Finally, lithium was precipitated by 0.5 mol L ' sodium phosphate. Under their optimal conditions, the recovery percentages of Ni, Co, Mn, and Li can reach 98%, 97%, 98%, and 89%, respectively. This is a relatively simple route in which all metal values could be effectively leached and recovered in citric acid media.
机译:在本文中,提出了一种湿法冶金工艺来从柠檬酸介质中的废锂离子电池中回收有价值的金属。在柠檬酸浓度为2 mol L〜(-1),浸出温度最佳的浸出实验条件下,Ni,Co,Mn和Li的浸出效率高达97%,95%,94%和99%。 80℃,浸出时间90分钟,液固比30 ml g〜(-1),2 vol。 %H_2O_2。对于金属回收过程,依次用二甲基乙二肟试剂和草酸铵选择性地沉淀镍和钴。然后用Na-D2EHPA萃取锰,并用硫酸汽提负载锰的D2EHPA。锰以水相中的MnSO_4的形式回收,皂化后D2EHPA可重复使用。最后,通过0.5mol L'磷酸钠使锂沉淀。在最佳条件下,Ni,Co,Mn和Li的回收率可分别达到98%,97%,98%和89%。这是一条相对简单的途径,其中所有金属元素都可以在柠檬酸介质中有效地浸出和回收。

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