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Photoacoustic spectroscopy: Trace CO detection by using 10 mW near-infrared laser and cantilever beam

机译:光声光谱:通过使用10 MW近红外激光器和悬臂梁进行跟踪CO检测

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摘要

Sulfur hexafluoride (SFsub6/sub) is commonly used in gas insulated switchgears (GIS) as an insulating medium. When local overheating or partial discharge occurs in GIS, SFsub6/sub may be decomposed into various products including CO. In this paper, based on the photoacoustic (PA) effect of gas molecules, the infrared absorption line at 6380.318 cmsup?1/sup was chosen as the target line. An infrared laser with a center wavelength of 1567 nm was chosen as the light source, and a cantilever enhanced PA detector was used as the sensor; then, the experimental platform was constructed. The influence of the temperature and pressure on the infrared absorption coefficient of CO was analyzed. The relationship of the PA signal and the CO concentration under the background of SFsub6/sub and Nsub2/sub were obtained. The results show that the temperature has a great influence on the CO absorption coefficient while the influence of pressure is negligible, and the temperature influential coefficient is about 5.0 × 10sup?6/sup cmsup?1/sup/°C. The detection system has the highest signal-to-noise ratio when the frequency of the chopper is 40 Hz. Under Nsub2/sub and SFsub6/sub background gases, there is a good linear relationship between CO concentration and pure PA signals. The minimum detection limit of CO in the background of Nsub2/sub is 3.63 ppm, while it is 9.88 ppm in SFsub6/sub. The different kinds of the background gases can influence the PA signals. The PA signals decrease with the increase of the temperature of the gas cell, and they also decrease with the increase of the pressure.
机译:六氟化硫(SF 6 )通常用于气体绝缘开关柜(GIS)作为绝缘介质。当在GIS中发生局部过热或局部放电时,SF 6 可以分解成各种产品,包括CO.本文,基于气体分子的光声(PA)效应,红外吸收线在6380.318选择CM 1 作为目标线。选择具有1567nm的中心波长的红外激光作为光源,并且使用悬臂增强型PA检测器作为传感器;然后,构建了实验平台。分析了温度和压力对CO红外吸收系数的影响。得到了PA信号和CO浓度在SF 6 和n 2 背景下的关系。结果表明,温度对CO吸收系数有很大影响,而压力的影响可忽略不计,而温度影响系数约为5.0×10 Δ6 cm Δ1 /°C。当斩波器的频率为40Hz时,检测系统具有最高的信噪比。在n 2 和sf 6 背景气体下,CO浓度和纯PA信号之间存在良好的线性关系。 N 2 背景下的CO的最小检测限为3.63ppm,而SF 6 在9.88ppm。不同类型的背景气体可以影响PA信号。 PA信号随着气池温度的增加而降低,并且随着压力的增加,它们也会降低。

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