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基于矩形微通道的微流控装置和高效液相色谱系统中扩散和流动诱导浓度分散的计算机模拟与理论

Computer simulation and theory of the diffusion- and flow-induced concentration dispersion in microfluidic devices and HPLC systems based on rectangular microchannels.

作者信息

Morf Werner E, van der Wal Peter D, de Rooij Nicolaas F

机构信息

SAMLAB, Institute of Microtechnology, University of Neuchâtel, CH-2000 Neuchâtel, Switzerland.

出版信息

Anal Chim Acta. 2008 Aug 1;622(1-2):175-81. doi: 10.1016/j.aca.2008.05.063. Epub 2008 Jun 3.

Abstract

The dynamics of formation of solute peaks in microfluidic systems are investigated by computer simulation. A finite-element numerical procedure is applied to analyze the diffusion- and flow-controlled concentration dispersion in a 40 microm-high rectangular flow-through channel. Two-dimensional concentration profiles are shown for channels with cross sections of large aspect ratio. The final shapes of the peaks are formed during a very short time period, ranging from a few milliseconds to about 1s for low and high flow velocities, respectively. The observed standard half-width sigma of the peaks is found to strictly follow a linear function of t(1/2) over the whole time range. The extrapolated long-term peak characteristics are in perfect agreement with theoretical predictions. For comparison, theoretical results on the concentration dispersion for solute peaks in open-channel liquid-chromatography (HPLC) are re-examined and applied.

摘要

通过计算机模拟研究了微流体系统中溶质峰的形成动力学。采用有限元数值方法分析了40微米高的矩形流通通道中扩散和流动控制的浓度分散情况。给出了大纵横比横截面通道的二维浓度分布图。峰的最终形状在非常短的时间段内形成,低流速和高流速下分别从几毫秒到约1秒不等。发现观察到的峰的标准半高宽σ在整个时间范围内严格遵循t(1/2)的线性函数。外推的长期峰特征与理论预测完全一致。为作比较,重新审视并应用了关于开放通道液相色谱(HPLC)中溶质峰浓度分散的理论结果。

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