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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Characterization of a Mid-Infrared Hollow Waveguide Gas Cell for the Analysis of Carbon Monoxide and Nitric Oxide
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Characterization of a Mid-Infrared Hollow Waveguide Gas Cell for the Analysis of Carbon Monoxide and Nitric Oxide

机译:用于分析一氧化碳和一氧化氮的中红外空心波导气室的特性

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摘要

Infrared spectroscopy is commonly applied to the analysis of small gasphase molecules. One of the limitations of using Fourier transform infrared (FT-IR) spectroscopy for these applications is the time response of long path length gas cells. Hollow waveguides (HW) that transmit in the mid-infrared spectral range have higher optical efficiencies compared to long path length cells due to smaller cell volumes. This study characterizes a silver coated, 2 mm inner diameter HW for the analysis of carbon monoxide (CO) and nitric oxide (NO) and compares the performance to a 3 m gas cell and traditional gas analyzers. The HW was found to have a CO response time less than the NDIR analyzer and approximately one-tenth of the response time on the FT-IR system equipped with a 3 m gas cell. The utility of the increased response time was demonstrated by measuring CO concentrations in sidestream cigarette smoke at the same temporal resolution as an NDIR analyzer. A 10 to 60percent increase in sensitivity using various frequencies for both CO and NO was observed using the HW compared to the 3 m multipass gas cell. However, cost savings for gassensing applications can be achieved on a per analyte basis by using FT-IR spectroscopy, especially in combination with a HW gas-sensing module, which is significantly less expensive than a multipass gas cell.
机译:红外光谱通常用于分析小气相分子。在这些应用中使用傅里叶变换红外(FT-IR)光谱的局限性之一是长程气体池的时间响应。在中红外光谱范围内传输的空心波导(HW)与长路径长度的单元相比具有更高的光学效率,这是因为单元体积较小。这项研究的特点是内径为2 mm的镀银涂层,用于分析一氧化碳(CO)和一氧化氮(NO),并将其性能与3 m气室和传统气体分析仪进行了比较。发现该硬件的CO响应时间比NDIR分析仪短,约为配备3 m气室的FT-IR系统的响应时间的十分之一。通过以与NDIR分析仪相同的时间分辨率测量侧流香烟烟雾中的CO浓度,证明了增加响应时间的效用。与3 m多通道气室相比,使用HW在各种频率下对CO和NO的灵敏度都提高了10%到60%。但是,通过使用FT-IR光谱,尤其是与HW气体传感模块组合使用,可以节省每个分析物的成本,尤其是与HW气体传感模块组合使用时,它比多通道气室便宜得多。

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