化学
光声光谱学
氢
校准
乙炔
衰减
气体探测器
谐波
艾伦方差
跟踪(教育)
分析化学(期刊)
生物医学中的光声成像
激光器
气相色谱法
时滞与积分
气体分析
光谱学
光电子学
光学
检出限
信号(编程语言)
声学
探测器
准确度和精密度
红外线的
功率(物理)
甲基膦酸二甲酯
分解
光声效应
氩
数据采集
甲烷
作者
Zhiyu Feng,Dajuan Lv,Liangming Xiong,Shiyu Yan,Wenzhe Wang,Lili Peng,Ping Lu,Chaotan Sima
标识
DOI:10.1021/acs.analchem.5c05394
摘要
Insulating materials in high-voltage electrical equipment are subject to decomposition during the early stages of faults, with the release of characteristic gases such as hydrogen (H2) and acetylene (C2H2). However, the current gas detection methods suffer from issues like cross-sensitivity, compactness, and reliability. This paper proposes a photoacoustic spectroscopy (PAS) gas sensor based on a single DFB laser for the simultaneous detection of H2 and C2H2. Specifically, C2H2 serves both as a pump gas for assisting H2 detection and as the target gas itself. Gas detection is implemented by tracking frequency shift caused by changes in sound velocity and extracting harmonic component generated by infrared absorption. By investigating the attenuation effect of H2 gas on PA signals, a calibration model is established, correlating C2H2 concentration with the harmonic peak under different H2 concentrations. Through Allan deviation analysis, the system achieved minimum detection limits (MDLs) of 96 ppm for H2 at 5.6 s integration time and 0.73 ppb for C2H2 at 894 s. The developed system enables integrated gas analysis in hydrogen-rich environments, showing practical potential for in situ monitoring in power systems.
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