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Gas Holdup and Volumetric Mass Transfer Coefficient in a Slurry Bubble Column

机译:浆料鼓泡塔中的气体滞留率和体积传质系数

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摘要

The gas holdup, ε, and volumetric mass transfer coefficient, k_La, were measured in a 0.051 m diameter glass column with ethanol as the liquid phase and cobalt catalyst as the solid phase in concentrations of 1.0 and 3.8 vol.-%. The superficial gas velocity U was varied in the range from 0 to 0.11 m/s, spanning both the homogeneous and heterogeneous flow regimes. Experimental results show that increasing catalyst concentration decreases the gas holdup to a significant extent. The volumetric mass transfer coefficient, k_La, closely follows the trend in gas holdup. Above a superficial gas velocity of 0.04 m/s the value of k_La/ε was found to be practically independent of slurry concentration and the gas velocity U; the value of this parameter is found to be about 0.45 s~(-1). Our studies provide a simple method for the estimation of k_La in industrial-size bubble column slurry reactors.
机译:在直径为0.051m的玻璃柱中,以乙醇为液相,钴催化剂为固相,以1.0和3.8vol .-%的浓度测量了气体滞留率ε和体积传质系数k_La。表观气体速度U在0到0.11 m / s的范围内变化,涵盖均相和非均相流态。实验结果表明,增加催化剂浓度会大大降低气体滞留率。体积传质系数k_La紧随气体滞留趋势。在0.04 m / s的表面气体速度以上,k_La /ε的值实际上与浆液浓度和气体速度U无关;该参数的值约为0.45 s〜(-1)。我们的研究为工业规模的鼓泡塔淤浆反应器中k_La的估算提供了一种简单的方法。

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