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Applications of a compact photothermal-deflection-based setup for trace-gas detection in real-time in situ environmental monitoring and chemical analysis

机译:紧凑的基于光热偏转的装置在痕量气体实时现场监测和化学分析中的应用

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We present the application of a compact setup for real-time in situ trace-gas detection based on photothermal beam deflection (mirage-effect) spectroscopy to environmental monitoring and chemical analysis. The setup provides many advantages for local (nonremote) detection applications, such as rapid response and high sensitivity under true in situ conditions. The detection limit of C2H4 in open air is estimated to be 0.25 parts in 10(9), based on concentration calibration with the dominant noise that is due to atmospheric turbulence on a time scale of 1 s. Detection limits are extrapolated for other species, and applications are explored by real-time measurements of gas emissions from a variety of solid and semisolid samples. (C) 1997 Optical Society of America.
机译:我们提出了一种紧凑的装置,用于基于光热束偏转(镜像效应)光谱的实时原位痕量气体检测在环境监测和化学分析中的应用。该设置为本地(非远程)检测应用提供了许多优势,例如在真实原位条件下的快速响应和高灵敏度。基于浓度校准,以大气中的C2H4的检出限为10(9),估计浓度为1 s,该噪声是由大气湍流引起的主要噪声引起的。推断出其他物种的检出限,并通过实时测量各种固体和半固体样品的气体排放来探索其应用。 (C)1997年美国眼镜学会。

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