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Leaching of vanadium by sulfur dioxide from spent catalysts for sulfuric acid production

机译:用于硫酸生产的废催化剂中的二氧化硫浸出钒

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摘要

Reductive leaching of vanadium from spent vanadium catalysts for sulfuric acid production by sulfur dioxide, with the use of weakly acidic aqueous solutions of sulfurous acid, is studied. It is shown that the rate and completeness of vanadium leaching is related to the presence of admixtures of polyvalent metals. For catalyst with high iron content (1.5%) the effect of different parameters on the kinetic of vanadium dissolution was determined. The acquired data was analyzed for correspondence to the mathematical models for heterogeneous processes. The best description of the leaching process is given by the model which assumes the process limitation by diffusion of two reactants trough the insoluble layer of forming product. It was found that these reactants are hydrogen and vanadyl ions reaction orders for which are 0.48 and -0.7, respectively. Temperature increase has a significant effect on the leaching rate (activation energy is 49.24 kj.mol(-1)). This value of activation energy can be explained by the change in permeability of the film of insoluble product with temperature increase, which improves diffusion rate of reactants. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了使用弱酸性的亚硫酸水溶液,从用二氧化硫生产硫酸的废钒催化剂中还原浸出钒的方法。结果表明,钒的浸出速度和完整性与多价金属混合物的存在有关。对于高铁含量(1.5%)的催化剂,确定了不同参数对钒溶解动力学的影响。分析所获取的数据以与异构过程的数学模型相对应。浸出过程的最好描述是通过模型给出的,该模型假定过程限制是由于两种反应物通过成形产物的不溶层扩散。发现这些反应物是氢和钒离子反应阶数分别为0.48和-0.7。温度升高对浸出率有显着影响(活化能为49.24 kj.mol(-1))。活化能的该值可以通过不溶产物的膜的渗透性随温度升高而变化来解释,这提高了反应物的扩散速率。 (C)2016 Elsevier B.V.保留所有权利。

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