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A Hyphenated Preconcentrator-Infrared-Hollow-Waveguide Sensor System for N 2 O Sensing

机译:用于N 2 O感测的联用预浓缩器-红外空心波导传感器系统

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Following the Kyoto protocol, all signatory countries must provide an annual inventory of greenhouse-gas emission including N2O. This fact associated with the wide variety of sources for N2O emissions requires appropriate sensor technologies facilitating in-situ monitoring, compact dimensions, ease of operation, and sufficient sensitivity for addressing such emission scenarios. In this contribution, we therefore describe an innovative portable mid-infrared chemical sensor system for quantifying gaseous N2O via coupling a substrate-integrated hollow waveguide (iHWG) simultaneously serving as highly miniaturized mid-infrared photon conduit and gas cell to a custom-made preconcentrator. N2O was collected onto a solid sorbent material packed into the preconcentrator unit, and then released via thermal desorption into the iHWG-MIR sensor utilizing a compact Fourier transform infrared (FTIR) spectrometer for molecularly selective spectroscopic detection with a limit of detection (LOD) at 5?ppbv. Highlighting the device flexibility in terms of sampling time, flow-rate, and iHWG design facilitates tailoring the developed preconcentrator-iHWG device towards a wide variety of application scenarios ranging from soil and aquatic emission monitoring and drone- or unmanned aerial vehicle (UAV)-mounted monitoring systems to clinical/medical analysis scenarios.
机译:根据《京都议定书》,所有签署国必须提供包括N2O在内的年度温室气体清单。与N2O排放源种类繁多相关的这一事实要求采用适当的传感器技术,以促进现场监测,紧凑的尺寸,易于操作以及足够的灵敏度来应对此类排放情景。因此,在这项贡献中,我们描述了一种创新的便携式中红外化学传感器系统,该系统可通过将同时用作高度微型化的中红外光子导管和气室的基质集成空心波导(iHWG)耦合到定制的预浓缩器来量化气态N2O 。将N2O收集到包装在预浓缩器单元中的固体吸附剂材料上,然后通过热解吸释放到iHWG-MIR传感器中,利用紧凑的傅立叶变换红外(FTIR)光谱仪进行分子选择性光谱检测,检测限为(LOD)为5ppbv。在采样时间,流速和iHWG设计方面突出设备的灵活性,有助于针对多种应用场景量身定制开发的pre-centrator-iHWG设备,包括土壤和水生排放监测以及无人机或无人机(UAV)-将监视系统安装到临床/医学分析场景。

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