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首页> 外文期刊>Journal of Colloid and Interface Science >Film mass transfer coefficient expressions for electroosmotic flows
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Film mass transfer coefficient expressions for electroosmotic flows

机译:电渗流的膜传质系数表达式

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Expressions are developed and presented that could be used to determine the film mass transfer coefficient of a solute in electroosmotic flows. In contrast to pressure-driven flows at low Reynolds numbers where the film mass transfer coefficient is independent of the linear characteristic dimension of the channel for how in electroosmotically driven flows at low Reynolds numbers the film mass transfer coefficient is shown to be a function of the ratio R/lambda, where R is the channel radius and lambda is the Debye length. This result implies that for electroosmotically driven flows in a packed bed or porous monolith with channels for flow having similar geometry but different sizes, the film mass transfer coefficient would vary with the size of the interstitial channels for bulk flow while in pressure-driven hows the film mass transfer coefficient would be the same for all interstitial channels. From the expressions presented in this work, one can show that for the same volumetric flow rate the film mass transfer coefficient of electroosmotically driven flows is proportional to that for pressure-driven flows, (C) 2000 Academic Press. [References: 30]
机译:提出并提出了可用于确定电渗流中溶质的薄膜传质系数的表达式。与低雷诺数下的压力驱动流动相反,在该薄膜中,薄膜质量传递系数与通道的线性特征尺寸无关,而对于低雷诺数下的电渗驱动流,薄膜的传质系数是线性的函数。 R / lambda之比,其中R为通道半径,lambda为Debye长度。该结果表明,对于在具有相似几何形状但尺寸不同的流道的填充床或多孔整料中进行电渗驱动的流,膜的传质系数将随间隙流的大小而改变,而在压力驱动的情况下,整体流膜的传质系数对于所有间隙通道都是相同的。从这项工作中提出的表达式可以看出,对于相同的体积流量,电渗驱动流的薄膜传质系数与压力驱动流的传质系数成正比,(C)2000 Academic Press。 [参考:30]

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