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首页> 外文期刊>Journal of Chemical Engineering of Japan >LIQUID-TO-PARTICLE MASS TRANSFER IN FIXED BED REACTOR WITH COCURRENT GAS-LIQUID DOWNFLOW
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LIQUID-TO-PARTICLE MASS TRANSFER IN FIXED BED REACTOR WITH COCURRENT GAS-LIQUID DOWNFLOW

机译:固定床反应器中液体到颗粒的传质,同时存在气体流

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References(13) Cited-By(38) Mass transfer coefficient kls was measured over a range of flow rates of gas Ug= 0-100 cm.s-1 and liquid Ul=0.05-25 cm.s-1 in a column packed with spheres of three different diameters d=2.8-12.7 mm. The systems used were the dissolution of benzoic acid in water and diffusionlimited oxidation of brass with dichromate ion in sulfuric acid solution. The effect of Ug on kls is not found at all in gas continuous flow, is the greatest in pulse flow and becomes less significant again in dispersed bubble flow. The value of kls increases rapidly around the transition from gas continuous to pulse flow. The enhancement factor β (=kls in two-phase flow/kls in single-phase flow) increases from 1.2 to 2 with increasing d in gas continuous flow while it equals the reciprocal of liquid holdup in pulse and dispersed bubble flows. A liquid-film analogy in gas continuous flow and a single-phase analogy in pulse and dispersed bubble flows are proposed and the experimental results are examined in the light of them.
机译:参考文献(13)被引用的By(38)传质系数kls在填充柱中的气体Ug = 0-100 cm.s-1和液体Ul = 0.05-25 cm.s-1的流速范围内测量具有三个不同直径的球体d = 2.8-12.7 mm。使用的系统是苯甲酸在水中的溶解以及在硫酸溶液中重铬酸根离子对黄铜的扩散限制氧化。在气体连续流中根本没有发现Ug对kls的影响,在脉冲流中最大,而在分散气泡流中再次变得不那么重要。在从连续气体到脉冲流的过渡过程中,kls的值迅速增加。增强因子β(=两相流中的kls /单相流中的kls)随着气体连续流中d的增加从1.2增加到2,而它等于脉冲和分散气泡流中持液量的倒数。提出了气体连续流动的液膜类比和脉冲与分散气泡流动的单相类比,并据此检验了实验结果。

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