首页> 外文期刊>Journal of Chemical Engineering of Japan >Enhancement of Gas-Liquid Mass Transfer with Unsteadily Forward-Reverse Rotating Multiple Delta Blade Impellers in an Unbaffled Agitated Vessel
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Enhancement of Gas-Liquid Mass Transfer with Unsteadily Forward-Reverse Rotating Multiple Delta Blade Impellers in an Unbaffled Agitated Vessel

机译:在不折流的搅拌容器中使用不稳定的正反旋转多个Delta叶片叶轮来增强气液传质

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摘要

Gas-liquid mass transfer was studied experimentally for an air-water system in an unbaffled vessel with a liquid height-to-diameter ratio of 2:1 that was agitated by unsteadily forward-reverse rotating multiple impellers which alternated rotation direction.Two kinds of four-bladed impellers were used with different designs of triangular delta blades.One(S impeller)has a straight blade with a downward triangle apex throughout.The other(T impeller)has a twisted blade composed of an inner downward part and an outer upward part.With both the impellers,enhancement of the mass transfer was observed with increases in the liquid-phase mass transfer coefficient as well as the gas-liquid interfacial area that determine the magnitude of the volumetric coefficient characterizing the rate for water to absorb oxygen in air.The respective dependences of mass transfer parameters on the axial position within the vessel were evaluated for the mean bubble diameter and gas hold-up.T impeller produced a gas-liquid interface with a larger area and more uniform distribution than S impeller.The effect of forward-reverse agitation using the delta blade impellers on formation of the gas-liquid dispersion was confirmed in relation to the behavior of gas bubbles within the vessel.
机译:实验研究了在空气高度为2:1的无挡板容器中的空气-水系统的气-液传质,该容器通过交替旋转方向的不稳定的正反旋转多个叶轮来搅动。四叶片叶轮用于不同设计的三角形三角叶片,一个(S叶轮)具有直的叶片,整个叶片向下呈三角形顶点,另一个(T叶轮)具有扭曲的叶片,由内部向下部分和外部向上组成在这两个叶轮上,随着液相传质系数以及气液界面面积的增加,传质得到了增强,这决定了表征水吸收氧气的速率的体积系数的大小。对于平均气泡直径和气体滞留率,评估了传质参数对容器内轴向位置的依赖性.T型叶轮产生了ga s-液体界面比S形叶轮具有更大的面积和更均匀的分布。与容器内气泡的行为有关,证实了使用三角形叶片式叶轮进行正向-反向搅拌对气液分散体形成的影响。

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