• Acta Optica Sinica
  • Vol. 39, Issue 2, 0230001 (2019)
Weiping Kong1、*, Tao Wu1、*, Wei Nie2, Zheng Xu2, Rong Lai1, Xingdao He1, Weidong Chen3, and Zhongping Chen1
Author Affiliations
  • 1 Jiangxi Engineering Laboratory for Optoelectronic Testing Technology, Nanchang Hangkong University, Nanchang, Jiangxi 330063, China
  • 2 School of Atmospheric Sciences, Nanjing University, Nanjing, Jiangsu 210023, China
  • 3 Laboratoire de Physicochimie del'Atmosphère, Université du Littoral Côte d'Opale, Dunkerque 59140, France;
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    DOI: 10.3788/AOS201939.0230001 Cite this Article Set citation alerts
    Weiping Kong, Tao Wu, Wei Nie, Zheng Xu, Rong Lai, Xingdao He, Weidong Chen, Zhongping Chen. Influence of Water Vapor Absorption on NO3 Radical Measurement Based on Broad-Band Cavity-Enhanced Absorption Spectroscopy[J]. Acta Optica Sinica, 2019, 39(2): 0230001 Copy Citation Text show less
    Schematic and photo of IBBCEAS experimental device. (a) Schematic; (b) photo
    Fig. 1. Schematic and photo of IBBCEAS experimental device. (a) Schematic; (b) photo
    Absorption cross sections of NO3 radical, NO2, and H2O
    Fig. 2. Absorption cross sections of NO3 radical, NO2, and H2O
    Calibration of mirror reflectivity
    Fig. 3. Calibration of mirror reflectivity
    Allan variance versus average time
    Fig. 4. Allan variance versus average time
    Effective water vapor absorption cross section obtained by interpolation method
    Fig. 5. Effective water vapor absorption cross section obtained by interpolation method
    Water vapor concentrations obtained by IBBCEAS instrument and commercial hygrometer
    Fig. 6. Water vapor concentrations obtained by IBBCEAS instrument and commercial hygrometer
    Fitted absorption lines of NO3 and NO2 at different water vapor concentrations. (a) Measured (black) and fitted(red) absorption lines; (b) residual of fitting
    Fig. 7. Fitted absorption lines of NO3 and NO2 at different water vapor concentrations. (a) Measured (black) and fitted(red) absorption lines; (b) residual of fitting
    Fitted concentration retrieval results of NO3, NO2 and H2O in ambient air. (a) Measured (gray) and fitted (red) absorption spectra of NO3 radical (22.3×10-12), NO2 (6.9×10-9) and H2O (1.4%); (b) measured absorption spectrum of ambient air (gray) and fitted H2O absorption spectrum (red); (c) absorption spectrum after subtraction of H2O absorption (gray) and fitted NO3 absorption spectrum (red); (d) absorption spectrum after subtraction of H2O absorption and NO3 radical (gray) and fitted NO2 absor
    Fig. 8. Fitted concentration retrieval results of NO3, NO2 and H2O in ambient air. (a) Measured (gray) and fitted (red) absorption spectra of NO3 radical (22.3×10-12), NO2 (6.9×10-9) and H2O (1.4%); (b) measured absorption spectrum of ambient air (gray) and fitted H2O absorption spectrum (red); (c) absorption spectrum after subtraction of H2O absorption (gray) and fitted NO3 absorption spectrum (red); (d) absorption spectrum after subtraction of H2O absorption and NO3 radical (gray) and fitted NO2 absor
    Time series of volume fractions of NO3 radical and NO2 in ambient air
    Fig. 9. Time series of volume fractions of NO3 radical and NO2 in ambient air
    Weiping Kong, Tao Wu, Wei Nie, Zheng Xu, Rong Lai, Xingdao He, Weidong Chen, Zhongping Chen. Influence of Water Vapor Absorption on NO3 Radical Measurement Based on Broad-Band Cavity-Enhanced Absorption Spectroscopy[J]. Acta Optica Sinica, 2019, 39(2): 0230001
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