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首页> 外文期刊>International Journal of Multiphase Flow >Experimental investigation of the influence of column scale, gas density and liquid properties on gas holdup in bubble columns
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Experimental investigation of the influence of column scale, gas density and liquid properties on gas holdup in bubble columns

机译:柱规模,气体密度和液体性质对气泡塔内气体滞留量影响的实验研究

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Measurements of gas holdups in bubble columns of 0.16, 0.30 and 0.33 m diameter were carried out. These columns were operated in co-current flow of gas and liquid phases and in semibatch mode. The column of 0.33 m diameter was operated at elevated pressures of up to 3.6 MPa. Nitrogen was employed as the gas phase and deionized water, aqueous solutions of ethanol and acetone and pure acetone and cumene as the liquid phase. The effects of differing liquid properties, gas density (due to elevated pressure), temperature, column diameter and superficial liquid velocity on gas holdup were studied. The gas holdup measurements were utilized by differential pressure measurements at different positions along the height of the bubble columns which allowed for the identification of axial gas holdup profiles. A decrease of gas holdup with increasing column diameter and an increase of gas holdup with increasing pressure was observed. The effect of a slightly decreasing gas holdup with increasing liquid velocity was found to exist at smaller column diameters. The use of organic solvents as the liquid phase resulted in a significant increase in gas holdup compared to deionized water. It is found that published gas holdup models are mostly unable to predict the results obtained in this study. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对直径为0.16、0.30和0.33 m的气泡塔中的气体滞留量进行了测量。这些塔以气相和液相并流并且以半间歇模式操作。直径为0.33 m的色谱柱在高达3.6 MPa的高压下运行。使用氮气作为气相,使用去离子水,使用乙醇和丙酮的水溶液,以及使用纯丙酮和异丙苯作为液相。研究了不同的液体性质,气体密度(由于高压),温度,塔直径和表观液体速度对气体滞留率的影响。通过沿气泡塔高度在不同位置的差压测量来利用气体滞留量测量值,从而可以确定轴向气体滞留率曲线。观察到随着塔直径的增加,气体滞留量减少,而随着压力增加,气体滞留量增加。发现在较小的色谱柱直径下,气体滞留率随液体流速的增加而略有降低。与去离子水相比,使用有机溶剂作为液相导致气体滞留量显着增加。发现已发布的气体滞留率模型大部分无法预测此研究中获得的结果。 (C)2015 Elsevier Ltd.保留所有权利。

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