Feasibility investigation of a novel method for leaching vanadium from vanadium slag using ionic liquids

H. Potgieter, Samaneh Teimouri
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Abstract

An environmentally friendly, novel method for extracting vanadium from slag with two imidazolium-based ionic liquids, namely1-butyl-3-methylimidazolium trifluoromethane sulfonate (Bmim+CF3SO3-), and 1-butyl-3-methyl-imidazolium hydrogen sulfate (Bmim+HSO4-), before and after magnetic separation, was proposed in this study. The effect of the type of ionic liquid, the concentration of ionic liquid, temperature and liquid to solid ratio were examined. The optimum experimental condition after examining these influential factors was found to be: ionic liquid (Bmim+HSO4–) 50% (v/v), a leaching temperature of 100 ℃, and a liquid to solid ratio of 12 ml/g (12:1), at a leaching time of 90 minutes, with shaking speed of 250 rpm. The results indicated that a maximum vanadium extraction of 94.2% with 57.6% iron as an impurity could be achieved from the non-magnetic slag fraction. The kinetics of vanadium dissolution in 50% (v/v) (Bmim+HSO4–) was governed by a surface chemical reaction.
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离子液体从钒渣中浸出钒新方法的可行性研究
本研究提出了在磁选前后分别使用1-丁基-3-甲基咪唑三氟甲烷磺酸盐(Bmim+CF3SO3-)和1-丁基-3-甲基咪唑硫酸氢盐(Bmim+HSO4-)两种咪唑基离子液体从矿渣中提取钒的环保新方法。考察了离子液体种类、离子液体浓度、温度、液固比等因素的影响。考察了这些影响因素后,确定了最佳实验条件:离子液体(Bmim+HSO4 -)浓度为50% (v/v),浸出温度为100℃,液固比为12 ml/g(12:1),浸出时间为90 min,摇摇转速为250 rpm。结果表明,在含铁57.6%的情况下,无磁渣部分钒提取率最高可达94.2%。在50% (v/v) (Bmim+HSO4 -)溶液中,钒的溶解动力学受表面化学反应控制。
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