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Use of mild organic acid reagents to recover the Co and Li from spent Li-ion batteries

机译:使用温和的有机酸试剂从废旧锂离子电池中回收钴和锂

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摘要

New organic acid mixtures have been investigated to recover the valuable metal ions from the cathode material of spent Li-ion batteries. The cathodic active material (LiCoO_2) collected from spent Li-ion batteries (LIBs) is dissolved in mild organic acids, iminodiacetic acid (IDA) and maleic acid (MA), to recover the metals. Almost complete dissolution occurred in slightly excess (than the stoichiometric requirement) of IDA or MA at 80 ℃ for 6 h, based on the Co and Li released. The reducing agent, ascorbic acid (AA), converts the dissolved Co(Ⅲ)- to Co(Ⅱ)-L (L - IDA or MA) thereby selective recovery of Co as Co (Ⅱ)-oxalate is possible. The formation of Co(Ⅲ)- and Co(Ⅱ)-L is evident from the UV-Vis spectra of the dissolved solution as a function of dissolution time. Thus, the reductive-complexing dissolution mechanism is proposed here. These mild organic acids are environmentally benign unlike the mineral acids.
机译:已经研究了新的有机酸混合物,以从废锂离子电池的阴极材料中回收有价值的金属离子。从废锂离子电池(LIB)中收集的阴极活性材料(LiCoO_2)溶解在温和的有机酸,亚氨基二乙酸(IDA)和马来酸(MA)中,以回收金属。根据释放出的钴和锂,在80℃下IDA或MA几乎完全溶解(超过化学计量要求)达6 h。还原剂抗坏血酸(AA)将溶解的Co(Ⅲ)-转化为Co(Ⅱ)-L(L-IDA或MA),从而可以有选择地回收作为Co(Ⅱ)-草酸盐的Co。从溶解溶液的UV-Vis光谱可以看出,Co(Ⅲ)-和Co(Ⅱ)-L的形成是溶解时间的函数。因此,在此提出了还原络合的溶解机理。与矿物酸不同,这些温和的有机酸对环境无害。

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