Acta Optica Sinica, Volume. 41, Issue 10, 1030001(2021)
Near-Infrared Laser Sensor for Detection of Methane Isotope Abundance
[4] Zhu M. The study of methane isotopes[D]. Beijing: Peking University, 1-68(1997).
[5] Ju Y W, Li Q G, Yan Z F et al. Origin types of CBM and their geochemical research progress[J]. Journal of China Coal Society, 39, 806-815(2014).
[8] Brass M, Röckmann T. Continuous-flow isotope ratio mass spectrometry method for carbon and hydrogen isotope measurements on atmospheric methane[J]. Atmospheric Measurement Techniques, 3, 1707-1721(2010).
[10] Aebersold R, Mann M. Mass spectrometry-based proteomics[J]. Nature, 422, 198-207(2003).
[11] Chen K, Mei M F. Detection of gas concentrations based on wireless sensor and laser technology[J]. Laser Journal, 39, 50-54(2018).
[14] Ma H L, Sun M G, Zha S L et al. Temperature dependence of line parameters of 12C 16O2 near 2.004 μm studied by tunable diode laser spectroscopy[J]. Chinese Physics B, 27, 023301(2018).
[15] del Río F J, Riu J, Rius F X. Robust linear regression taking into account errors in the predictor and response variables[J]. The Analyst, 126, 1113-1117(2001).
[22] Guillevic M, Vollmer M K, Wyss S A et al. Dynamic-gravimetric preparation of metrologically traceable primary calibration standards for halogenated greenhouse gases[J]. Atmospheric Measurement Techniques, 11, 3351-3372(2018).
Get Citation
Copy Citation Text
Tianyu Zhang, Zhiwei Liu, Lei Zhang, Hongbin Lu, Chuantao Zheng, Yiding Wang. Near-Infrared Laser Sensor for Detection of Methane Isotope Abundance[J]. Acta Optica Sinica, 2021, 41(10): 1030001
Category: Spectroscopy
Received: Oct. 28, 2020
Accepted: Dec. 8, 2020
Published Online: May. 8, 2021
The Author Email: Zheng Chuantao (zhengchuantao@jlu.edu.cn)