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Recovery of cobalt and nickel from spent lithium ion batteries with citric acid using leaching process: Kinetics study

机译:柠檬酸浸出法从废锂离子电池中回收钴和镍的动力学研究

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Lithium ion batteries are commonly used as power sources for mobile phone, but by using it continually will degrade their capabilities. Battery replacements will cause a lot of waste in environment. Spent lithium ion batteries cathode contain heavy metals, such as cobalt and nickel. However it is also included as valuable metals thus recovery process is necessary. In this research, hydrometallurgical leaching process has been done for recovery of cobalt and nickel from spent lithium ion batteries using citric acid as a leaching agent by varying citric acid concentration (0.5-1 M), reaction temperature (50-80) and reaction time (5-20 minutes). The spent lithium ion batteries were analyzed by atomic absorption spectroscopy (AAS). The result showed that the leaching of lithium ion batteries using citric acid was depend on citric acid concentration, reaction temperature and reaction time. Based on kinetics study, the leaching reaction of cobalt and nickel from cathode powder using citric acid was chemically controlled process and the activation energy of cobalt and nickel were 67.12 kJ/mole and 58.22 kJ/mole. The reaction order of leaching cobalt and nickel using citric acid was first-order reaction.
机译:锂离子电池通常用作手机的电源,但是持续使用会降低其性能。更换电池会在环境中造成大量浪费。废锂离子电池正极包含重金属,例如钴和镍。但是,它也作为贵重金属包括在内,因此必须进行回收处理。在这项研究中,通过改变柠檬酸浓度(0.5-1 M),反应温度(50-80)和反应时间,已经进行了湿法冶金浸出工艺,以柠檬酸为浸出剂,从废锂离子电池中回收钴和镍。 (5-20​​分钟)。通过原子吸收光谱法(AAS)分析废锂离子电池。结果表明,柠檬酸浸提锂离子电池取决于柠檬酸浓度,反应温度和反应时间。在动力学研究的基础上,化学控制了柠檬酸对正极粉中钴和镍的浸出反应,实现了化学反应,钴和镍的活化能分别为67.12 kJ / mol和58.22 kJ / mol。用柠檬酸浸出钴和镍的反应顺序为一级反应。

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