Metal Extraction and Forming Division, CSIR-National Metallurgical Laboratory, Jamshedpur 831 007, India.
Waste Manag. 2013 Sep;33(9):1890-7. doi: 10.1016/j.wasman.2013.05.008. Epub 2013 Jun 14.
In view of the stringent environmental regulations, availability of limited natural resources and ever increasing need of alternative energy critical elements, an environmental eco-friendly leaching process is reported for the recovery of lithium and cobalt from the cathode active materials of spent lithium-ion batteries of mobile phones. The experiments were carried out to optimize the process parameters for the recovery of lithium and cobalt by varying the concentration of leachant, pulp density, reductant volume and temperature. Leaching with 2M sulfuric acid with the addition of 5% H(2)O(2) (v/v) at a pulp density of 100 g/L and 75°C resulted in the recovery of 99.1% lithium and 70.0% cobalt in 60 min. H(2)O(2) in sulfuric acid solution acts as an effective reducing agent, which enhance the percentage leaching of metals. Leaching kinetics of lithium in sulfuric acid fitted well to the chemical controlled reaction model i.e. 1-(1-X)(1/3)=k(c)t. Leaching kinetics of cobalt fitted well to the model 'ash diffusion control dense constant sizes spherical particles' i.e. 1-3(1-X)(2/3)+2(1-X)=k(c)t. Metals could subsequently be separated selectively from the leach liquor by solvent extraction process to produce their salts by crystallization process from the purified solution.
鉴于严格的环境法规、有限自然资源的可用性以及对替代能源关键元素的日益增长的需求,本研究报告了一种从废旧锂离子电池阴极活性材料中回收锂和钴的环保浸出工艺。通过改变浸出剂浓度、矿浆浓度、还原剂体积和温度等参数,对锂和钴的回收过程进行了优化实验。在 75°C、矿浆浓度为 100g/L、添加 5%(v/v)H₂O₂的 2M 硫酸中浸出,60min 后可实现 99.1%的锂和 70.0%的钴的回收。硫酸溶液中的 H₂O₂作为一种有效的还原剂,提高了金属的浸出率。在硫酸中锂的浸出动力学符合化学控制反应模型,即 1-(1-X)(1/3)=k(c)t。钴的浸出动力学符合“灰分扩散控制密常数尺寸球形颗粒”模型,即 1-3(1-X)(2/3)+2(1-X)=k(c)t。随后可以通过溶剂萃取工艺从浸出液中选择性地分离金属,从净化后的溶液中通过结晶工艺生产其盐。