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CHARACTERIZING GASEOUS FLOW IN SUBMICRON CHROMATOGRAPHY COLUMNS

机译:表征亚微米色谱柱中的气态流动

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摘要

Enormous interest exists to develop the next generation of an integrated microsystem for chemical and biological analysis (μChemLab~(TM)) and to further reduce the volume of the system. One approach is to scale down the size of critical components and to explore any pumping mechanism that can minimize the power requirement. Since the majority of the pumping requirement is to overcome the wall resistance in the gas chromatography (GC) column, our attention is to study the gas flow in this GC column. As the column dimension decreases, the gaseous flow will go from a continuum regime into a non-continuum regime; i.e., slip, transition, and free molecular regimes. Thus it is very important to well characterize the gaseous flow in submicron columns and to understand its flow behavior. Specifically, in this study, our focus is to investigate the effects of viscosity, rarefaction, and compressibility as the column dimension decreases. Both theoretical predictions and experimental results will be presented.
机译:存在开发下一代用于化学和生物学分析的集成微系统(μChemLab〜)并进一步减小系统体积的巨大兴趣。一种方法是缩小关键组件的尺寸,并探索可以使功率需求最小化的任何泵送机制。由于大多数泵送要求是为了克服气相色谱(GC)色谱柱中的壁阻力,因此我们的研究重点是研究此GC色谱柱中的气流。随着色谱柱尺寸的减小,气流将从连续状态变为非连续状态。即滑移,过渡和自由分子机制。因此,很好地表征亚微米色谱柱中的气流并了解其流动行为非常重要。具体来说,在这项研究中,我们的重点是研究随着色谱柱尺寸的减小,粘度,稀疏度和可压缩性的影响。将给出理论预测和实验结果。

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