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首页> 外文期刊>International Journal of Mineral Processing >A kinetics study of multi-stage counter-current circulation acid leaching of vanadium from stone coal
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A kinetics study of multi-stage counter-current circulation acid leaching of vanadium from stone coal

机译:石煤中钒的多级逆流循环酸浸动力学研究

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摘要

The multi-stage counter-current circulation acid leaching of vanadium from stone coal was presented to decrease sulfuric acid consumption and enhance the leaching efficiency. The main factors on multi-stage counter-current circulation acid leaching were investigated. The factors were analyzed in terms of kinetics using the shrinking core model (SCM). The results show that the vanadium recovery could reach 86% under the conditions of sulfuric acid concentration of 4 M, liquid to solid ratio of 2 mL/g, temperature of 95 , reaction time of 60 min, mean particle size of 125 m and circulation acid leaching stage of three. During the four-stage acid leaching process, the KAl(SO_4)_2(H_2O)_(12) could form and lead to the losses of vanadium in acid leaching solution due to the strong adsorption performance. The acid leaching process was controlled by chemical reaction with the sulfuric acid concentration under 4 M, but controlled by internal diffusion with the sulfuric acid concentration above 4 M. However, the acid leaching process was always controlled by internal diffusion at different temperatures.
机译:提出了从石煤中钒进行多级逆流循环酸浸出,以减少硫酸消耗并提高浸出效率。研究了多级逆流循环酸浸的主要因素。使用收缩核心模型(SCM)根据动力学分析了这些因素。结果表明,在硫酸浓度为4 M,液固比为2 mL / g,温度为95,反应时间为60 min,平均粒径为125 m和循环的条件下,钒的回收率可达到86%。酸浸阶段为三个。在四阶段酸浸过程中,由于较强的吸附性能,可能形成KAl(SO_4)_2(H_2O)_(12)并导致钒在酸浸溶液中的损失。酸浸过程是通过化学反应控制硫酸浓度在4 M以下,而酸浸过程是通过内部扩散控制的,硫酸浓度在4 M以上。然而,酸浸过程始终是在不同温度下通过内部扩散控制的。

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