• Chinese Journal of Quantum Electronics
  • Vol. 42, Issue 1, 27 (2025)
WANG Xudong1,2, JIANG Liming3, MEI Jiaoxu2,*, WANG Ruifeng2..., GU Mingsi2, CHEN Jiajin2, TAN Tu2, WANG Guishi2, LIU Kun2 and GAO Xiaoming1,2|Show fewer author(s)
Author Affiliations
  • 1School of Environmental Science and Optoelectronic Technology, University of Science and Technology of China,Hefei 230026, China
  • 2Center for Basic Science, Anhui Institute of Optics and Fine Mechanics, HFIPS, Chinese Academy of Sciences,Hefei 230031, China
  • 3Logging Technology Research Institute, China National Logging Corporation, Xi'an 710077, China
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    DOI: 10.3969/j.issn.1007-5461.2025.01.003 Cite this Article
    Xudong WANG, Liming JIANG, Jiaoxu MEI, Ruifeng WANG, Mingsi GU, Jiajin CHEN, Tu TAN, Guishi WANG, Kun LIU, Xiaoming GAO. Spectral measurement technique for high temperature and high pressure methane gas from underground coal gasification[J]. Chinese Journal of Quantum Electronics, 2025, 42(1): 27 Copy Citation Text show less

    Abstract

    Underground coal gasification is an important way to realize clean and efficient utilization of coal. In order to realize the detection of methane produced by underground coal gasification, a wide-spectrum measurement technique based on tunable diode laser absorption spectroscopy (TDLAS) for methane at high temperature and high pressure and the corresponding gas parameter inversion method are proposed in this work. Firstly, a wide-spectrum measurement system for high temperature and high pressure methane was established based on a tunable semiconductor laser with a wide wavelength tuning range. Then, the absorption spectrum of 2.05% standard methane gas was measured using the system at temperatures of 200 oC and 400 oC and pressures of 0.5 × 106–3.0 × 106 Pa, with spectral wavenumber ranging from 6010–6190 cm-1. Finally, based on absorption spectroscopy, simultaneous inversion of multiple parameters including methane concentration, temperature and pressure were achieved using the least squares fitting algorithm, and the inversion errors of each parameter were all within 10%. The research provides an effective and feasible means for on-line detection of methane gas produced by underground coal gasification.
    Xudong WANG, Liming JIANG, Jiaoxu MEI, Ruifeng WANG, Mingsi GU, Jiajin CHEN, Tu TAN, Guishi WANG, Kun LIU, Xiaoming GAO. Spectral measurement technique for high temperature and high pressure methane gas from underground coal gasification[J]. Chinese Journal of Quantum Electronics, 2025, 42(1): 27
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