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Contribution of Liquid- and Gas-Side Mass Transfer Coefficients to Overall Mass Transfer Coefficient in Taylor Flow in a Microreactor

机译:液侧和气侧传质系数对微反应器中泰勒流中总传质系数的贡献

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Gas-liquid microreactors find an increasing range of applications both in production, and for chemical analysis. The most often employed flow regime in these microreactors is Taylor flow. The rate of absorption of gases in liquids depends on gas-side and liquid-side resistances. There are several publications about liquid-side mass transfer coefficients in Taylor flow, but the data about gas-side mass transfer coefficients are practically non existent. We analysed the problem of gas-side mass transfer resistance in Taylor flow and determined conditions, in which it may influence the overall mass transfer rate. Investigations were performed using numerical simulations. The influence of the gas diffusivity, gas viscosity, channel diameter, bubble length and gas bubble velocity has been determined. It was found that in some case the mass transfer resistances in both phases are comparable and the gas-side resistance may be significant. In such cases, neglecting the gas-side coefficient may lead to errors in the experimental data interpretation.
机译:气液微反应器在生产和化学分析中都有越来越广泛的应用。这些微反应器中最常用的流动方式是泰勒流动。液体中气体的吸收速率取决于气体侧和液体侧的电阻。关于泰勒流中的液体侧传质系数的出版物很多,但是关于气体侧传质系数的数据实际上是不存在的。我们分析了泰勒流中气体侧传质阻力的问题,并确定了可能影响总传质速率的条件。使用数值模拟进行了研究。确定了气体扩散率,气体粘度,通道直径,气泡长度和气泡速度的影响。发现在某些情况下,两相中的传质阻力是可比较的,并且气体侧阻力可能很大。在这种情况下,忽略气体侧系数可能会导致实验数据解释错误。

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