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Compact sensor for methane detection in the mid infrared region based on Quartz Enhanced Photoacoustic Spectroscopy

机译:基于石英增强光声光谱仪的紧凑型传感器,用于中红外区域的甲烷检测

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摘要

A compact system for methane sensing based on the Quartz-Enhanced Photoacoustic Spectroscopy technique has been developed. This development has been taken through two versions which were based respectively on a Fabry Perot quantum wells diode laser emitting at 2.3 mu m, and on a quantum wells distributed feedback diode laser emitting at 3.26 mu m. These lasers emit near room temperature in the continuous wave regime. A spectrophone consisting of a quartz tuning fork and one steel microresonator was used. Second derivative wavelength modulation detection was used to perform low methane concentration measurements. The sensitivity and the linearity of the QEPAS sensor were studied. A normalized noise equivalent absorption coefficient of 7.26 x 10(-6) cm(-1) W/Hz(1/2) was achieved. This corresponds to a detection limit of 15 ppmv for 12 s acquisition time. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经开发了一种基于石英增强光声光谱技术的紧凑型甲烷传感系统。这一发展经历了两个版本,分别基于以2.3μm发射的Fabry Perot量子阱二极管激光器和以3.26μm发射的量子阱分布式反馈二极管激光器为基础。这些激光在连续波状态下发射接近室温的光。使用了由石英音叉和一个钢制微谐振器组成的分光器。二阶导数波长调制检测用于执行低甲烷浓度测量。研究了QEPAS传感器的灵敏度和线性度。归一化噪声等效吸收系数为7.26 x 10(-6)cm(-1)W / Hz(1/2)。这对应于12 s采集时间的15 ppmv的检测极限。 (C)2015 Elsevier B.V.保留所有权利。

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