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首页> 外文期刊>ACS Omega >Leaching Kinetics of Vanadium from Calcium-Roasting High-Chromium Vanadium Slag Enhanced by Electric Field
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Leaching Kinetics of Vanadium from Calcium-Roasting High-Chromium Vanadium Slag Enhanced by Electric Field

机译:电场从钙焙烧高铬钒矿渣浸出动力学

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Vanadium exists as multivalent valences in high-chromium vanadium slag, and it is hard to leach out in low valence. Electro-oxidation technology has been applied to enhance the leaching process of calcium-roasting high-chromium vanadium slag. The effect of parameters that affect the leaching efficiency of vanadium including concentration of sulfur acid, current density, reaction temperature, and liquid-to-solid ratio was investigated. The results showed that vanadium in low valence could be oxidized and efficiently leached out enhanced with electricity. The leaching kinetics was analyzed, which indicates that the leaching rate was controlled by the surface chemical reaction with an apparent activation energy of 40.11 kJ/mol. On the basis of this process, vanadium could be efficiently leached out with a leaching efficiency of 92.14% under optimal conditions: concentration of sulfur acid of 40 vol %, current density of 750 A/m~(2), reaction temperature of 90 °C, reaction time of 180 min, particle size under 75 μm, liquid-to-solid ratio of 4:1 mL/g, and stirring rate of 500 rpm. The relationship between the leaching efficiency and the parameters affecting the leaching process could be described as 1 – (1 – x )~(1/3) = K _(0) × [H_(2)SO_(4)]~(0.1390) × [J ]~(0.03354) × [T ]~(2.8247) × [L /S ]~(?0.2598) × exp~(40.11/T ) × t .
机译:钒存在于高铬钒渣中的多价级,并且很难在低效果中浸出。应用了电氧化技术,提升了钙焙烧高铬钒渣的浸出过程。研究了影响钒的浸出效率的参数的影响,包括硫酸,电流密度,反应温度和液体与液体比例的浓度。结果表明,低可钒的钒可以被氧化和有效地用电力渗出。分析了浸出动力学,表明浸出速率由表面化学反应控制,表观活化能量为40.11kJ / mol。在该过程的基础上,在最佳条件下浸出效率为92.14%的浸出效率可以有效地浸出钒:硫酸浓度为40体积%,电流密度为750A / m〜(2),反应温度为90° C,反应时间为180分钟,粒度低于75μm,液体至固体比为4:1ml / g,搅拌速率为500rpm。浸出效率与影响浸出过程的参数之间的关系可以描述为1 - (1 - x)〜(1/3)= k _(0)×[h_(2)so_( 4)]〜(0.1390)×[ j]〜(0.03354)×[ t]〜(2.8247)×[ l / s]〜(?0.2598)×exp〜( 40.11 / t)× t。

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