• Journal of Atmospheric and Environmental Optics
  • Vol. 20, Issue 2, 168 (2025)
YANG Zijian1, LI Lin1, GUO Guqing1, GONG Ting1..., LIU Qiang2, TIAN Yali1, SUN Xiaocong1, QIU Xuanbing1 and LI Chuanliang1,*|Show fewer author(s)
Author Affiliations
  • 1Shanxi Engineering Research Center of Precision Measurement and Online Detection Equipment and School of Applied Science, Taiyuan University of Science and Technology, Taiyuan 030024, China
  • 2Key Laboratory of Atmospheric Optics, Anhui Institute of Optics and Fine Mechanics, HFIPS,Chinese Academy of Sciences, Hefei 230031, China
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    DOI: 10.3969/j.issn.1673-6141.2025.02.005 Cite this Article
    Zijian YANG, Lin LI, Guqing GUO, Ting GONG, Qiang LIU, Yali TIAN, Xiaocong SUN, Xuanbing QIU, Chuanliang LI. Trace carbon dioxide gas sensor based on resonance photoacoustic spectroscopy[J]. Journal of Atmospheric and Environmental Optics, 2025, 20(2): 168 Copy Citation Text show less
    References

    [1] F X Xin, D W Yang, C Li et al. Detection of CO2 concentration using a fiber-optic cantilever acoustic sensor in2.0-μm band(2020).

    [2] R Lewicki, G Wysocki, A A Kosterev et al. Carbon dioxide and ammonia detection using 2 μm diode laser based quartz-enhanced photoacoustic spectroscopy. Applied Physics B, 87, 157-162(2007).

    [3] Z Wang, Q Wang, J Y L Ching et al. A portable low-power QEPAS-based CO2 isotope sensor using a fiber-coupled interband cascade laser. Sensors and Actuators B: Chemical, 246, 710-715(2017).

    [4] S D Qiao, Ya C Qu, Y F Ma et al. A sensitive carbon dioxide sensor based on photoacoustic spectroscopy with a fixed wavelength quantum cascade laser. Sensors (Basel), 19, 4187(2019).

    [5] W J Davis. The relationship between atmospheric carbon dioxide concentration and global temperature for the last 425 million years. Climate, 5, 76-76(2017).

    [6] W Q Li, F Zhang, L Y Pan et al. Gas or electricity? Regional pathway selection under carbon neutrality target: A case study of industrial boilers. Journal of Cleaner Production, 349, 131313(2022).

    [7] S Zampolli, I Elmi, J Stürmann et al. Selectivity enhancement of metal oxide gas sensors using a micromachined gas chromatographic column. Sensors and Actuators B: Chemical, 105, 400-406(2005).

    [8] Y Sun, Q Liu, S L Zha et al. Sub‐ppb nitrogen dioxide detection based on resonant photoacoustic spectroscopy. Microwave and Optical Technology Letters, 63, 2058-2062(2021).

    [9] Y Y Zhu, J J Shi, Z Y Zhang et al. Development of a gas sensor utilizing chemiluminescence on nanosized titanium dioxide. Analytical Chemistry, 74, 120-124(2002).

    [10] Z Y Zhang, C Zhang, X R Zhang. Development of a chemiluminescence ethanol sensor based on nanosized ZrO2. The Analyst, 127, 792-796(2002).

    [11] C Bahrini, O Herbinet, P A Glaude et al. Detection of some stable species during the oxidation of methane by coupling a jet-stirred reactor (JSR) to cw-CRDS. Chemical Physics Letters, 534, 1-7(2012).

    [12] L E McHale, B Martinez, T W Miller et al. Open-path cavity ring-down methane sensor for mobile monitoring of natural gas emissions. Optics Express, 27, 20084-20097(2019).

    [13] J Jiang, M X Zhao, G M Ma et al. TDLAS-based detection of dissolved methane in power transformer oil and field application. IEEE Sensors Journal, 18, 2318-2325(2018).

    [14] L Dong, F K Tittel, C G Li et al. Compact TDLAS based sensor design using interband cascade lasers for mid-IR trace gas sensing. Optics Express, 24, A528-A535(2016).

    [15] V Koskinen, J Fonsen, K Roth et al. Cantilever enhanced photoacoustic detection of carbon dioxide using a tunable diode laser source. Applied Physics B, 86, 451-454(2007).

    [16] V Hanyecz, Á Mohácsi, A Pogány et al. Multi-component photoacoustic gas analyzer for industrial applications. Vibrational Spectroscopy, 52, 63-68(2010).

    [17] Y F Ma, R Lewicki, M Razeghi et al. QEPAS based ppb-level detection of CO and N2O using a high power CW DFB-QCL. Optics Express, 21, 1008-1019(2013).

    [18] Z D Reed, B Sperling, R D van Zee et al. Photoacoustic spectrometer for accurate, continuous measurements of atmospheric carbon dioxide concentration. Applied Physics B, 117, 645-657(2014).

    [19] L Dong, H P Wu, H D Zheng et al. Double acoustic microresonator quartz-enhanced photoacoustic spectroscopy. Optics Letters, 39, 2479-2482(2014).

    [20] K Liu, J X Mei, W J Zhang et al. Multi-resonator photoacoustic spectroscopy. Sensors and Actuators B: Chemical, 251, 632-636(2017).

    [21] L Han, X L Chen, H Xia et al. A photoacoustic spectroscopy system for gas detection based on the multi-pass cell, 10025, 1-7(2016).

    [22] T H Yang, W G Chen, P Y Wang. A review of all-optical photoacoustic spectroscopy as a gas sensing method. Applied Spectroscopy Reviews, 56, 143-170(2021).

    [23] S L Zha, H L Ma, C L Zha et al. Trace gas detection based on photoacoustic spectroscopy in 3-D printed gas cell. Journal of Near Infrared Spectroscopy, 28, 236-242(2020).

    [24] Y F Ma, S D Qiao, Y He et al. Highly sensitive acetylene detection based on multi-pass retro-reflection-cavity-enhanced photoacoustic spectroscopy and a fiber amplified diode laser. Optics Express, 27, 14163-14172(2019).

    [25] Y Peng, Q X Yu. Photoacoustic spectral detection of C2H2 gas based on tunable fiber laser. Spectroscopy and Spectral Analysis, 29, 2030-2033(2009).

    [26] W J LYU, H L Li, W D Li et al. Optimization and experimental research on modulation parameters of TDLAS technology. Laser Technology, 45, 336-343(2021).

    [27] D P Leleux, R Claps, W Chen et al. Applications of Kalman filtering to real-time trace gas concentration measurements. Applied Physics B, 74, 85-93(2002).

    Zijian YANG, Lin LI, Guqing GUO, Ting GONG, Qiang LIU, Yali TIAN, Xiaocong SUN, Xuanbing QIU, Chuanliang LI. Trace carbon dioxide gas sensor based on resonance photoacoustic spectroscopy[J]. Journal of Atmospheric and Environmental Optics, 2025, 20(2): 168
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