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首页> 外文期刊>Separation and Purification Technology >Selective separation and recovery of cobalt from leach liquor of discarded Li-ion batteries using thiophosphinic extractant
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Selective separation and recovery of cobalt from leach liquor of discarded Li-ion batteries using thiophosphinic extractant

机译:使用硫代次膦萃取剂从废弃锂离子电池的浸出液中选择性分离和回收钴

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摘要

Plenty of valuable metals especially cobalt is present in spent batteries. The conventional process of disposing the spent batteries as land fill or metal recovery through pyrometallurgical process was not sustainable step to resolve problems. Present work is a part of systematic study involving solvent extraction for the separation and recovery of cobalt from leach liquor of spent batteries containing 21.83 g/L, 2.77 g/ L, 9.14 g/L and 4.14 g/L of cobalt, lithium, copper and aluminum, respectively. Initially bench scale studies were carried out using synthetic solution of 10.44 g/L cobalt and 1.33 g/L lithium (composition similar to the leach liquor diluted two times) in sulfate medium to optimize the condition for the metal recovery from the leach liquor of available batteries. 15% Cyanex 272 as extractant, 3% isodecanol as phase modifier and kerosene as diluent extracted about 99.9% cobalt from synthetic solution at equilibrium pH 5,0/ A ratio 1:1 within 5 min of contact time in two stages. The metal loaded organic was scrubbed with 10% Na2CO3 and stripped with 10% H2SO4. The optimized condition obtained was compared with the leach liquor of batteries which shows the presence of about 99.99% cobalt in the stripped solution and about 95% Li in the raffinate. Hydrated salt of cobalt can be further obtained by using evaporation, crystallization, precipitation and cementation process.
机译:废电池中存在大量有价值的金属,尤其是钴。通过废冶金方法将废电池作为填埋场或金属回收处理的常规方法不是解决问题的可持续步骤。目前的工作是系统研究的一部分,涉及溶剂萃取以从含21.83 g / L,2.77 g / L,9.14 g / L和4.14 g / L钴,锂,铜的废电池浸出液中分离和回收钴。和铝。最初是在硫酸盐培养基中使用10.44 g / L钴和1.33 g / L锂(组成类似于浸提液稀释两次)的合成溶液进行台式研究,以优化从现有浸提液中回收金属的条件。电池。 15%的Cyanex 272作为萃取剂,3%的异癸醇作为相改性剂和煤油作为稀释剂,在两个阶段的接触时间内5分钟内以平衡pH 5.0 / A 1:1从合成溶液中萃取了约99.9%的钴。负载金属的有机物用10%Na2CO3洗涤,并用10%H2SO4汽提。将获得的最佳条件与电池的浸出液进行比较,该浸出液显示在汽提溶液中存在约99.99%的钴,在萃余液中存在约95%的Li。可以通过蒸发,结晶,沉淀和胶结工艺进一步获得钴的水合盐。

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