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首页> 外文期刊>RSC Advances >Recovery of cobalt from spent lithium ion batteries using sulphuric acid leaching followed by solid–liquid separation and solvent extraction
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Recovery of cobalt from spent lithium ion batteries using sulphuric acid leaching followed by solid–liquid separation and solvent extraction

机译:使用硫酸浸出的锂离子电池从锂离子电池中恢复钴,然后通过固液分离和溶剂萃取

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摘要

Herein, the method of hydrometallurgy is adopted to recycle the precious metal cobalt in spent lithium ion batteries (LIBs). The best experimental conditions for leaching cobalt ions in sulphuric acid–hydrogen peroxide system are studied. The best leaching operation condition is an H _(2) SO _(4) concentration of 3.0 mol L ~(?1) , liquid–solid ratio of 7?:?1 and hydrogen peroxide dosage of 1.6 mL g ~(?1) for 2.5 h at 70 °C. Using the extraction characteristics of D2EHPA (di-(2-ethylhexyl) phosphoric acid) and PC-88A (2-ethylhexyl phosphonic acid mono-2-ethylhexyl ester) for a specific ion in different pH value leaching solutions, the best experimental conditions are D2EHPA and PC-88A saponification rates of 20% and 30%, respectively, sulfonated kerosene volume of 70%, oil–water (O/A) ratio of 1?:?1, and extraction time of 10 min. Two extractions are applied, the first extraction occurs at pH 2.70 and the second extraction is done at pH 2.60 using D2EHPA to remove copper and manganese ions. After the extraction operation, PC-88A is used to further extract the leaching solution and maintain the pH at 4.25, so that cobalt and nickel ions are effectively separated, then cobalt ions are separated by oxalic acid and cobalt oxalate is obtained. The purity of cobalt is as high as 99.50%.
机译:在此,采用氢化冶金方法来回收锂离子电池(LIBS)中贵金属钴。研究了浸出硫酸 - 氢过氧化氢体系中浸出钴离子的最佳实验条件。最佳的浸出操作条件是H _(2)所以_(4)浓度为3.0mol l〜(α1),液体 - 固体比为7?:1和过氧化氢剂量为1.6ml g〜(α1 )在70°C下2.5小时。使用D2ehPa的提取特性(二乙基己基)磷酸)和PC-88A(2-乙基己酰基膦酸单-2-乙基己酯)在不同pH值浸出溶液中的特定离子,最好的实验条件是D2ehpa和PC-88a皂化率分别为20%和30%,分别磺化煤油体积为70%,油水(O / A)比为1?:1,提取时间为10分钟。施加两种萃取,第一次提取在pH 2.70时发生,第二萃取在pH 2.60下使用D2ehPa去除铜和锰离子。在提取操作之后,PC-88a用于进一步提取浸出溶液并将pH保持在4.25,使得钴和镍离子有效分离,然后通过草酸分离钴离子,并获得钴草酸钴。钴的纯度高达99.50%。

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