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首页> 外文期刊>Analytical chemistry >Determining the Partial Pressure of Volatile Components via Substrate-Integrated Hollow Waveguide Infrared Spectroscopy with Integrated Microfluidics
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Determining the Partial Pressure of Volatile Components via Substrate-Integrated Hollow Waveguide Infrared Spectroscopy with Integrated Microfluidics

机译:用集成微流体通过基材 - 集成中空波导红外光谱法测定挥发性组分的分压

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摘要

A microfluidic system combined with substrate integrated hollow waveguide (iHWG) vapor phase infrared spectroscopy has been developed for evaluating the chemical activity of volatile compounds dissolved in complex fluids. Chemical activity is an important yet rarely exploited parameter in process analysis and control. Access to chemical activity parameters enables systematic studies on phase diagrams of complex fluids, the detection of aggregation processes, etc. The instrumental approach developed herein uniquely enables controlled evaporation/permeation from a sample solution into a hollow waveguide structure and the analysis of the partial pressures of volatile constituents. For the example of a binary system, it was shown that the chemical activity may be deduced from partial pressure measurements at thermodynamic equilibrium conditions. The combined microfluidic-iHWG midinfrared sensor system (mu FLUID-IR) allows the realization of such studies in the absence of any perturbations provoked by sampling operations, which is unavoidable using state-of-the-art analytical techniques such as headspace gas chromatography. For demonstration purposes, a water/ethanol mixture was investigated, and the derived data was cross-validated with established literature values at different mixture ratios. Next to perturbation-free measurements, a response time of the sensor 150 s (t(90)) at a recovery time 300 s (t(recovery)) has been achieved, which substantiates the utility of mu FLUID-IR for future process analysis-and-control applications.
机译:已经开发了一种与衬底集成中空波导(IHWG)气相红外光谱相结合的微流体系统,用于评估溶解在复杂流体中的挥发性化合物的化学活性。化学活性是过程分析和控制中的一个重要又一的利用参数。获得化学活性参数的访问能够对复杂流体的相图进行系统研究,聚集过程的检测等。本文开发的乐器方法独特地使得从样品溶液中的控制蒸发/渗透到中空波导结构和分析部分压力挥发性成分。对于二进制系统的示例,示出了化学活性可以从热力学平衡条件下从部分压力测量推导出来。组合的MicroFluidic-IHWG中小学媒体小额传感器系统(MU Fluid-IR)允许在没有采样操作引起的任何扰动的情况下实现这种研究,这是不可避免的,这是不可避免的,这是不可避免的,这是使用最先进的分析技术,例如顶空气相色谱。为了说明目的,研究了水/乙醇混合物,并以不同的混合物比以建立的文献值交叉验证了衍生数据。在扰动的测量旁边,已经实现了恢复时间的传感器+ 150s(T(90))的响应时间。已经实现了Mu Filling-IR的效用对于未来的过程分析和控制应用程序。

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  • 来源
    《Analytical chemistry》 |2018年第7期|共7页
  • 作者单位

    Ulm Univ Inst Analyt &

    Bioanalyt Chem Albert Einstein Allee 11 D-89081 Ulm Germany;

    CNRS CEA Grenoble ICSM CEA UM2 ENSCM UMR5257 17 Ave Martyrs F-38000 Grenoble France;

    Ulm Univ Inst Analyt &

    Bioanalyt Chem Albert Einstein Allee 11 D-89081 Ulm Germany;

    CNRS CEA Grenoble ICSM CEA UM2 ENSCM UMR5257 17 Ave Martyrs F-38000 Grenoble France;

    CNRS CEA Grenoble ICSM CEA UM2 ENSCM UMR5257 17 Ave Martyrs F-38000 Grenoble France;

    Ulm Univ Inst Analyt &

    Bioanalyt Chem Albert Einstein Allee 11 D-89081 Ulm Germany;

    CEA DRF 17 Ave Martyrs F-38054 Grenoble 09 France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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