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Gas-Liquid Mass Transfer Characteristics of Large-Scale Impellers:Empirical Correlations of Gas Holdups and Volumetric Mass Transfer Coefficients in Stirred Tanks

机译:大型叶轮的气液传质特性:搅拌罐中气体滞留量与体积传质系数的经验关系

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摘要

Gas dispersion with large-scale impellers consisting of modified large paddle impellers in stirred tanks,with rather large ratios of both impeller diameter and impeller height to tank diameter,was experimentally examined in transition and turbulent mixing ranges.Gas holdups and volumetric gas-liquid mass transfer coefficients with large-scale impellers,i.e.,Maxblend and Fullzone impellers,were measured in 0.31 and 0.6 m I.D.stirred tanks,and the gas dispersion performance of large-scale impellers was compared with that of double conventional small-scale high-speed impeller systems,i.e.,double four-flat blade disk turbine impellers and double four-flat paddle impellers.The gas holdups of the large-scale impellers were comparable with those of the small-scale impeller systems at a given rotational speed.The volumetric gas-liquid mass transfer coefficients for large-scale impellers were also similar to those of the small-scale impeller systems.It was found that the large-scale impellers are not more energy efficient than the small-scale impellers in obtaining good gas dispersion.Empirical correlations for gas holdups and volumetric gas-liquid mass transfer coefficients were developed.They fit the experimental data in transition and turbulent mixing ranges reasonably well,with correlation factors greater than 0.84.
机译:在过渡和湍流混合范围内,通过实验检查了大型叶轮的气体分散情况,该大型叶轮由搅拌罐中的改进型大型桨叶轮组成,叶轮直径和叶轮高度与罐直径之比相当大。在0.31和0.6 m ID搅拌罐中测量了大型叶轮(Maxblend和Fullzone叶轮)的传热系数,并将大型叶轮的气体扩散性能与传统的双倍小型高速叶轮的气体扩散性能进行了比较在给定的转速下,大型叶轮的气体滞留量可与小型叶轮系统的滞留量相媲美。大型叶轮的液体传质系数也与小型叶轮系统相似。在获得良好的气体分散性方面,能源效率不比小型叶轮高。建立了气体滞留率与气液传质系数的经验相关性。它们与过渡和湍流混合范围内的实验数据合理地拟合,并具有相关因子大于0.84。

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