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Photoacoustic Detection of Trace Gases

机译:微量气体的光声检测

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摘要

In this paper the recent developments in the field of diode-laser photoacoustics will be discussed. Photoacoustic detector designs with high sensitivity and signal-to-noise ratio will be presented. The advantages and disadvantages of different modulation and measurement techniques will be discussed and compared. Simple expressions will be given for an estimation of the sensitivity achievable with an optimized photoacoustic detector. Recent results will be presented for a state-of-the-art dual-resonator differential cell suitable for sensitive trace gas analysis with low electronic and acoustic noise. With this resonant photoacoustic cell and a near-infrared DFB diode laser with 42 mW power at 1.53 μm polar ammonia molecules could be detected with a sensitivity of 200 parts-per-billion volume (ppbv) under flow conditions used to reduce the adsorption problem. By excitation of fundamental vibrations in methane using a pulsed optical parametric oscillator (OPO) with 60 mW output power a sensitivity of 1.2 ppbv has been achieved using this resonant cell. This setup allows sub-ppbv detection of the greenhouse gas methane with a concentration of about 1.7 ppmv in ambient air.
机译:在本文中,将讨论二极管激光光声领域的最新发展。将提出具有高灵敏度和信噪比的光声检测器设计。将讨论和比较不同调制和测量技术的优缺点。将给出简单的表达式,以估算使用优化的光声检测器可获得的灵敏度。将为适用于灵敏的痕量气体分析且电子和声学噪声较低的最新双谐振器差分池提供最新结果。使用这种共振光声电池和在1.53μm极性氨分子下具有42 mW功率的近红外DFB二极管激光器,在用于减少吸附问题的流动条件下,灵敏度为200十亿分之几(ppbv)。通过使用输出功率为60 mW的脉冲光学参量振荡器(OPO)激发甲烷中的基本振动,使用该谐振单元已实现1.2 ppbv的灵敏度。这种设置允许亚ppbv检测环境空气中浓度约为1.7 ppmv的温室气体。

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