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Thermal desorption/injection characterization of a microfabricated passive preconcentrator/injector for micro gas chromatography

机译:微型气相色谱法的微制造被动式预融合器/注射器的热解吸/注射特征

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We have developed a microfabricated passive vapor preconcentrator/injector (μPPI) for field-deployable gas chromatographic (GC) analyses of volatile organic compounds (VOCs). Interfaced with a properly configured microscale gas chromatograpy (GC) system, the device is designed to permit the analyses in a matter of minutes with high separation performance and detection sensitivity. Following diffusion-driven passive sample collection, the μPPI can be rapidly heated to thermally desorb the captured vapors and inject them with carrier gas to a downstream GC column and detector in a reusable manner for separation and quantification. To quantitatively predict the vapor desorption and injection performance of the device, theoretical models accounting for transient thermal energy transport, vapor desorption kinetics, and vapor flow fluid dynamics have been proposed and experimentally validated in this paper. Data obtained by preliminary tests using a conventional GC instrument are in agreement with model predictions, thus demonstrating the validity of the multi-physics approach used in our modeling study.
机译:我们开发了一种用于挥发性有机化合物(VOC)的场可展开的气相色谱(GC)分析的挥发性有机化合物(GOC)的微制造被动蒸汽预凝固仪/注射器(μ ppi)。通过适当配置的微尺寸气相色谱(GC)系统界面,该装置旨在允许分析的分析,具有高分离性能和检测灵敏度。在扩散驱动的无源样本收集之后,μ ppi可以快速加热以热解吸捕获的蒸汽并以可重复使用的方式以可重复使用的方式将载气用载气注射到下游GC柱和检测器中,以便分离和定量。为了定量预测装置的蒸汽解吸和注入性能,已经提出了对瞬态热能传输,蒸气解吸动力学和蒸汽流动流体动力学的理论模型并在本文中进行了实验验证。通过使用传统GC仪器获得的数据获得的数据与模型预测一致,从而展示了我们建模研究中使用的多物理方法的有效性。

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