Acta Photonica Sinica, Volume. 52, Issue 3, 0352116(2023)

Observation and Inversion of the N2O Gas Column Concentration in Hefei,China

Wenxue PAN1...2, Yinbo HUANG1,3, Dandan LIU4, Jun HUANG1,2, Leilei ZHANG1,2, Jianyu LI1,3, Xingji LU1,3,*, and Zhensong CAO13 |Show fewer author(s)
Author Affiliations
  • 1Key Laboratory of Atmospheric Optics, Anhui Institute of Optics and Fine Mechanics, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China
  • 2Science Island Branch of Graduate School, University of Science and Technology of China, Hefei 230026, China
  • 3Advanced Laser Technology Laboratory of Anhui Province, Hefei 230037, China
  • 4College of Electrical and Optoelectronic Engineering, West Anhui University, Lu′an, 237012,China
  • show less
    References(22)

    [1] Zhengyue XUE, Jun LI, Xiaohai LIU et al. Measurement and profile inversion of atmospheric N2O absorption spectrum based on laser heterodyne detection. Acta Physica Sinica, 70, 217801(2021).

    [2] A R RAVISHANKARA, J S DANIEL, R W PORTMANN. Nitrous oxide (N2O): the dominant ozone-depleting substance emitted in the 21st century. Science, 326, 123-125(2009).

    [3] M ZHOU, B LANGEROCK, K C WELLS et al. An intercomparison of total column-averaged nitrous oxide between ground-based FTIR TCCON and NDACC measurements at seven sites and comparisons with the GEOS-Chem model. Atmospheric Measurement Techniques, 12, 1393-1408(2019).

    [4] I SHCHERBAK, N MILLAR, G P ROBERTSON. Global metaanalysis of the nonlinear response of soil nitrous oxide (N2O) emissions to fertilizer nitrogen. Proceedings of the National Academy of Sciences, 111, 9199-9204(2014).

    [5] Zhiwei WU, Yanting DONG, Weidong ZHOU. Near infrared cavity enhanced absorption spectroscopy study of N2O. Spectroscopy and Spectral Analysis, 34, 2081-2084(2014).

    [6] Yu ZHOU, Yuan CAO, Gongdong ZHU et al. Detection of nitrous oxide by resonant photoacoustic spectroscopy based on mid infrared quantum cascade laser. Acta Physica Sinica, 67, 014201(2018).

    [7] D WUNCH, G C TOON, J F L BLAVIER et al. The total carbon column observing network. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 369, 2087-2112(2011).

    [8] Ke CHE, Yi LIU, Zhaonan CAI et al. Review of atmospheric greenhouse gas observation and application based on portable fourier transform infrared spectrometer. Remote Sensing Technology and Application, 36, 44-54(2021).

    [9] J K HEDELIUS, C VIATTE, D WUNCH et al. Assessment of errors and biases in retrievals of XCO2, XCH4, XCO, and XN2O from a 0.5 cm-1 resolution solar-viewing spectrometer. Atmospheric Measurement Techniques, 9, 3527-3546(2016).

    [10] F HASE, M FREY, T BLUMENSTOCK et al. Application of portable FTIR spectrometers for detecting greenhouse gas emissions of the major city Berlin. Atmospheric Measurement Techniques, 8, 3059-3068(2015).

    [11] M M FREY, F HASE, T BLUMENSTOCK et al. Long-term column-averaged greenhouse gas observations using a COCCON spectrometer at the high-surface-albedo site in Gobabeb, Namibia. Atmospheric Measurement Techniques, 14, 5887-5911(2021).

    [12] T YIRDAW BERHE, G MENGISTU TSIDU, T BLUMENSTOCK et al. Methane and nitrous oxide from ground-based FTIR at Addis Ababa: observations, error analysis, and comparison with satellite data. Atmospheric Measurement Techniques, 13, 4079-4096(2020).

    [13] Dandan LIU, Yinbo HUANG, Yusong SUN et al. Observation of greenhouse gases and their impacts on atmospheric transmittance, 11170, 111703D(2019).

    [14] A N TIKHONOV. On the solution of ill-posed problems and the method of regularization, 151, 501-504(1963).

    [15] D L PHILLIPS. A technique for the numerical solution of certain integral equations of the first kind. Journal of the ACM, 9, 84-97(1962).

    [16] Qiansi TU. Observation of atmospheric greenhouse gas abundances on regional scales in Boreal areas using portable FTIR spectrometers(2019).

    [17] M M FREY. Characterisation and application of portable solar absorption spectrometers for the detection of greenhouse gas emissions from regional anthropogenic sources(2018).

    [18] M KIEL, F HASE, T BLUMENSTOCK et al. Comparison of XCO abundances from the total carbon column observing network and the network for the detection of atmospheric composition change measured in Karlsruhe. Atmospheric Measurement Techniques, 9, 2223-2239(2016).

    [19] F KLAPPENBACH, M BERTLEFF, J KOSTINEK et al. Accurate mobile remote sensing of XCO2 and XCH4 latitudinal transects from aboard a research vessel. Atmospheric Measurement Techniques, 8, 5023-5038(2015).

    [20] R R DRAXLER, G D HESS. An overview of HYSPLIT-4 modeling system for trajectories: dispersion and deposition. Aust Met Mag, 47, 295-308(1998).

    [21] Ping LI, Man LANG. Contribution of nitrification and denitrification to the nitrous oxide emission from forest and grassland soils. Scientia Agricultura Sinica, 46, 4726-4732(2013).

    [22] Jun HUANG, Yinbo HUANG, Xingji LU et al. Measurement and concentration inversion of ozone in Golmud by laser heterodyne spectrometer. Acta Photonica Sinica, 50, 0401002(2021).

    Tools

    Get Citation

    Copy Citation Text

    Wenxue PAN, Yinbo HUANG, Dandan LIU, Jun HUANG, Leilei ZHANG, Jianyu LI, Xingji LU, Zhensong CAO. Observation and Inversion of the N2O Gas Column Concentration in Hefei,China[J]. Acta Photonica Sinica, 2023, 52(3): 0352116

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Special Issue for Frontiers and Techniques of Laser Spectroscopy

    Received: Jul. 29, 2022

    Accepted: Oct. 18, 2022

    Published Online: Jun. 21, 2023

    The Author Email: LU Xingji (xjlu@aiofm.ac.cn)

    DOI:10.3788/gzxb20235203.0352116

    Topics