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基于全光学石英增强光声光谱的痕量气体检测系统。

Trace Gas Detection System Based on All-Optical Quartz-Enhanced Photoacoustic Spectroscopy.

机构信息

College of Physics and Electronic Information Engineering, Neijiang Normal University, Neijiang, China.

Research Center of Intelligent Manufacturing, Neijiang Normal University, Neijiang, China.

出版信息

Appl Spectrosc. 2019 Nov;73(11):1327-1333. doi: 10.1177/0003702819866468. Epub 2019 Aug 2.

DOI:10.1177/0003702819866468
PMID:31373509
Abstract

An all-optical quartz-enhanced photoacoustic spectroscopy system (QEPAS) with quadrature point stabilization for trace gas detection was reported. The extrinsic interferometry-based optical fiber Fabry-Perot sensor with quadrature point self-stabilization for detection of quartz prong vibration was used to replace the conventional one. The optimal coefficient of the modulation depth was ∼2.2 theoretically and experimentally, corresponding to the modulation depth of ∼0.1795 cm at an acetylene (CH) absorption line of 6534.36 cm. Furthermore, the enhancement of QEPAS signal was obtained by using different microresonators. The minimum detectable limit of ∼580 parts per billion by volume (ppbv) was obtained. A normalized noise equivalent absorption coefficient for CH of 2.95 × 10 cm·W·Hz was obtained. The detection sensitivity was enhanced by a factor of ∼2.1 in comparison to the conventional QEPAS system. The linear correlation coefficient of the QEPAS signal response to the CH concentration was 0.998 within the range from 10 parts per million by volume (ppmv) to 500 ppmv. Finally, the long-term stability of the QEPAS system was evaluated using Allan deviation analysis, and the ultimate detection limit of ∼130 ppbv was reached for an optimum averaging time of ∼108 s at atmospheric pressure and ambient temperature.

摘要

一种用于痕量气体检测的全光学石英增强光声光谱系统 (QEPAS) ,具有正交点稳定。报道了一种基于外差干涉的光纤法布里-珀罗传感器,具有正交点自稳定功能,用于检测石英叉振动,取代了传统的传感器。理论和实验上最优的调制深度系数约为 2.2,对应于乙炔 (CH) 在 6534.36cm 吸收线处的调制深度约为 0.1795cm。此外,通过使用不同的微谐振器获得了 QEPAS 信号的增强。获得了最小可检测极限约为 580 体积分数 ppmv (ppbv)。获得了 CH 的归一化噪声等效吸收系数为 2.95×10cm·W·Hz。与传统的 QEPAS 系统相比,检测灵敏度提高了约 2.1 倍。QEPAS 信号对 CH 浓度的响应的线性相关系数在 10 体积分数 ppmv 至 500ppm 范围内为 0.998。最后,通过 Allan 偏差分析评估了 QEPAS 系统的长期稳定性,在大气压和环境温度下,最佳平均时间约为 108s 时,达到了约 130ppbv 的最终检测极限。

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