甲烷
无组织排放
波长
时滞与积分
材料科学
线性
可调谐激光吸收光谱技术
激光器
光学
灵敏度(控制系统)
校准
光路
光电子学
分析化学(期刊)
可调谐激光器
化学
物理
温室气体
电子工程
生物
工程类
量子力学
有机化学
色谱法
生态学
作者
J. Norooz Oliaee,Nicaulas Sabourin,Simon A. Festa-Bianchet,James A. Gupta,Matthew R. Johnson,Kevin A. Thomson,Gregory J. Smallwood,Prem Lobo
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2022-01-20
卷期号:7 (2): 564-572
被引量:24
标识
DOI:10.1021/acssensors.1c02444
摘要
A challenge for mobile measurement of fugitive methane emissions is the availability of portable sensors that feature high sensitivity and fast response times, simultaneously. A methane gas sensor to measure fugitive emissions was developed using a continuous-wave, thermoelectrically cooled, GaSb-based distributed feedback diode laser emitting at a wavelength of 3.27 μm to probe methane in its strong ν3 vibrational band. Direct absorption spectra (DAS) as well as wavelength-modulated spectra (WMS) of pressure-broadened R(3) manifold lines of methane were recorded through a custom-developed open-path multipass cell with an effective optical path length of 6.8 m. A novel metrological approach was taken to characterize the sensor response in terms of the linearity of different WMS metrics, namely, the peak-to-peak amplitude of the X2f component and the peak and/or the integrated area of the background-subtracted quadrature signal (i.e., Q(2f – 2f0)) and the background-subtracted 1f-normalized quadrature signal (i.e., Q(2f/1f – 2f0/1f0)). Comparison with calibration gas concentrations spanning 1.5 to 40 ppmv indicated that the latter WMS metric showed the most linear response, while fitting DAS provides a traceable reference. In the WMS mode, a sensitivity better than 1 ppbv was achieved at a 1 s integration time. The sensitivity and response time are well-suited to measure enhancements in ambient methane levels caused by fugitive emissions.
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