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Electroosmotic Dispersion in Micro-Channels and its Implications

机译:微通道中的电胶质色散及其含义

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Dispersion of a non-electrolyte solute due to the electroosmotic flow through a long straight micro-channel is analyzed theoretically. Two sources of dispersions are considered, namely, the departure from adsorption equilibrium fof the solute under consideration and the non-uniformity of the flow velocity within the channel cross-section. Two types of electroosmotic velocity non-uniformity, which result in dispersion, are taken into account: the non-uniformity of electroosmotic flow within the double layer region and the non-uniformities of parasite pressure driven flow which often accompanies electroosmosis. Analytical expressions are obtained to address dispersion in terms of plate height for arbitrary magnitude of electric surface potential, electrolyte composition and cross-section geometry. It is discussed how the predicted plate height depends on the cross-section geometry, electrokinetic potential, electrolyte content, adsorption isotherm and adsorption rate constant.
机译:在理论上分析了通过长直微通道的电渗流引起的非电解质溶质的分散。考虑两个分散源,即,在考虑所考虑的溶质和沟道横截面内的流速的不均匀性偏离吸附平衡FOF。考虑到两种类型的电渗速度不均匀性:双层区域内的电渗流和寄生虫的不均匀性,这通常伴随电渗。获得分析表达式以在板高度方面寻址分散,用于任意电力表面电位,电解质组合物和横截面几何形状。讨论了预测板高度如何取决于横截面几何形状,电动电位,电解质含量,吸附等温线和吸附速率恒定。

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