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muciPRECON: multichannel preconcentrators for portable mid-infrared hydrocarbon gas sensors

机译:muciPRECON:用于便携式中红外碳氢化合物气体传感器的多通道预浓缩器

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摘要

Enrichment of vapor phase molecules is a crucial step during the detection of environmentally relevant trace gases suitable for detection via compact mid-infrared sensing devices. Methane is among the most abundant greenhouse gases in the troposphere, yet difficult to monitor given its rather low concentration levels. Consequently, for utilizing mobile and compact infrared sensors with limited absorption path lengths for detecting methane, appropriate preconcentration is a prerequisite. The present study introduces a multichannel substrate-integrated preconcentrator (muciPRECON) utilizing Carbosieve S-II/S-III adsorbent materials facilitating thermal desorption of enriched methane directly into a mid-infrared gas sensor based on substrate-integrated hollow waveguides (iHWGs) combined with a portable Fourier transform infrared (FT-IR) spectrometer suitable for in-field operation. With this novel approach, preconcentration factors (PCFs) up to 6.7 and a limit of detection (LOD) of 12 ppm(v) using Carbosieve S-II as the sorbent material were achieved.
机译:气相分子的富集是检测适合通过紧凑型中红外传感设备进行检测的环境相关微量气体过程中的关键步骤。甲烷是对流层中最丰富的温室气体之一,但由于其浓度较低,因此难以监测。因此,为了利用吸收路径长度有限的移动式紧凑型红外传感器检测甲烷,必须进行适当的预浓缩。本研究介绍了一种利用Carbosieve S-II / S-III吸附剂材料的多通道基质集成预浓缩器(muciPRECON),可将富集甲烷的热量直接解吸到基于基质集成空心波导(iHWGs)的中红外气体传感器中。适用于现场操作的便携式傅里叶变换红外(FT-IR)光谱仪。通过这种新颖的方法,使用Carbosieve S-II作为吸附剂材料,可实现高达6.7的预浓系数(PCF)和12 ppm(v)的检测限(LOD)。

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