Retrieval of content of greenhouse gases from atmospheric spectra of solar radiation with the use of different spectroscopic data on absorption lines / Chesnokova T.Y., Chentsov A.V., Rokotyan N.V., Zakharov V.I. // Atmospheric and Oceanic Optics. - 2015. - V. 28, l. 5. - P. 469-475.

ISSN:
10248560
Type:
Article
Abstract:
Atmospheric spectra of solar radiation, calculated with different data on absorption lines of atmospheric gases are compared with spectra measured with a ground-based high-resolution Fourier-transform spectrometer. The contents of carbon dioxide and methane in the atmospheric column are retrieved from measured spectra with the use of different modern spectroscopic databanks in the direct problem. Values of the methane content in the atmosphere retrieved with the use of two last HITRAN versions are shown to differ almost by 2%; a lower difference was observed for carbon dioxide. © 2015, Pleiades Publishing, Ltd.
Author keywords:
atmospheric transmission; carbon dioxide; methane; spectroscopic databanks
Index keywords:
нет данных
DOI:
10.1134/S1024856015050036
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84950308821&doi=10.1134%2fS1024856015050036&partnerID=40&md5=f558fefce3a4e198a8bb514bf8f0c5e4
Соавторы в МНС:
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Поле Значение
Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-84950308821&doi=10.1134%2fS1024856015050036&partnerID=40&md5=f558fefce3a4e198a8bb514bf8f0c5e4
Affiliations V.E. Zuev Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences, pl. Akademika Zueva 1, Tomsk, Russian Federation; Ural Federal University, pr. Lenina 51, Yekaterinburg, Russian Federation
Author Keywords atmospheric transmission; carbon dioxide; methane; spectroscopic databanks
Funding Details 15-01-05984, RFBR, Russian Foundation for Basic Research
References http://www.esrl.noaa.gov/gmd/ccgg/trends/global.html, Trends in Atmospheric Carbon Dioxide; http://www.ipcc.ch, IPCC–Intergovernmental Panel on Climate Change; Belan, B.D., Krekov, G.M., The effect of anthropogenic factor on the content of greenhouse gases in the troposphere. 1. Methane (2012) Opt. Atmos. Okeana, 25 (4), pp. 361-373; Wunch, D., Toon, G.C., Blavier, J.-F.L., Washenfelder, R.A., Notholt, J., Connor, B.J., Griffith, D.W.T., Wennberg, P.O., The total carbon column observing network (2011) Phil. Trans. Roy. Soc. London, A, 369 (1943), pp. 2087-2112; Buchwitz, M., Chevallier, F., Bergamaschi, P., Aben, I., (2011) User Requirements Document for the GHG-CCI project of ESA’s Climate Change Initiative; Dils, B., Buchwitz, M., Reuter, M., Schneising, O., Boesch, H., Parker, R., Guerlet, S., Wunch, D., The Greenhouse Gas Climate Change Initiative (GHG-CCI): Comparative validation of GHG-CCI SCIAMACHY/ENVISAT and TANSO-FTS/GOSAT CO2 and CH4 retrieval algorithm products with measurements from the TCCON (2014) Atmos. Measur. Technol., 7 (6), pp. 1723-1744; Yu. Chesnokova, T., Boudon, V., Gabard, T., Gribanov, K.G., Firsov, K., Zakharov, V.I., Near-infrared radiative transer modeling with different CH4 spectroscopic data bases to retrieve atmospheric methane total amount (2011) J. Quant. Spectrosc. Radiat. Transfer, 112 (17), pp. 2676-2682; Rothman, L.S., Jacquemart, D., Barbe, A., Benner, D.C., Birk, M., Brown, L.R., Carleer, M.R., Wagner, G., The HITRAN 2004 molecular spectroscopy database (2005) J. Quant. Spectrosc. Radiat. Transfer, 96 (2), pp. 139-204; Rothman, L.S., Gordon, I.E., Barbe, A., Benner, D.C., Bernath, P.F., Birk, M., Boudon, V., Auwera, J.V., The HITRAN 2008 molecular spectroscopic database (2009) J. Quant. Spectrosc. Radiat. Transfer, 110 (9-10), pp. 533-572; Dai, T., Shi, G., Zhang, X., Xu, N., Influence of HITRAN database updates on retrievals of atmospheric CO2 from near-infrared spectra (2012) Acta Meteorol. Sin., 26 (5), pp. 629-641; Yu. Chesnokova, T., Spectroscopic factors, influencing on the accuracy of the atmospheric radiative transfer simulation in the methane absorption bands in the near infrared region (2013) Atmos. Ocean. Opt., 26 (5), pp. 417-426; Chentsov, A.V., Voronina, Y.V., Chesnokova, T.Y., Atmospheric transmission simulation with different CO2 absorption line profiles (2013) Opt. Atmos. Okeana, 26 (9), pp. 711-715; http://www.cfa.harvard.edu/hitran/; Rothman, L.S., Gordon, I.E., Babikov, Y., Barbe, A., Benner, D.C., Bernath, P.F., Birk, M., Wagner, G., The HITRAN 2012 molecular spectroscopic database (2013) J. Quant. Spectrosc. Radiat. Transfer, 130, pp. 4-50; Brown, L.R., Sung, K., Benner, D.C., Devi, V.M., Boudon, V., Gabard, T., Wenger, C., Spickler, P.T., Methane line parameters in the HITRAN 2012 database (2013) J. Quant. Spectrosc. Radiat. Transfer, 130, pp. 201-219; Tashkun, S.A., Perevalov, V.I., Radiation properties of CO2: Spectroscopic databases for atmospheric and high-temperature applications (2011) Opt. Atmos. Okeana, 24 (12), pp. 1109-1112; Tashkun, S.A., Perevalov, V.I., Gamache, R.R., Lamouroux, J., CDSD-296, High resolution Carbon Dioxide Spectroscopic Databank: Version for atmospheric applications (2015) J. Quant. Spectrosc. Radiat. Transfer, 152, pp. 45-73; Nikitin, A.V., Lyulin, O.M., Mikhailenko, S.N., Perevalov, V.I., Filippov, N.N., Grigoriev, I.M., Morino, I., Matsunaga, T., GOSAT2014 methane spectral line list (2015) J. Quant. Spectrosc. Radiat. Transfer, 154, pp. 63-71; http://www.gosat.nies.go.jp/index_e, . html; Nikitin, A., Lyulin, O.M., Mikhailenko, S.N., Perevalov, V.I., Filippov, N.N., Grigoriev, I.M., Morinoc, I., Watanabed, T., GOSAT-2009 methane spectral list in the 5550–6236 cm–1 range (2010) J. Quant. Spectrosc. Radiat. Transfer, 111 (15), pp. 2211-2224; Fontenla, J., White, O.R., Fox, P.A., Avrett, E.H., Kurucz, R.L., Calculation of solar irradiances. I. Synthesis of the solar spectrum (1999) Astrophys. J., 518, pp. 480-500; http://kurucz.harvard.edu/sun/irradiance2008/; ftp://acd.ucar.edu; Anderson, G., Clough, S., Kneizys, F., Chetwynd, J., Shettle, E., AFGL Atmospheric Constituent Profiles (0–120 km). AFGL-TR-86-0110 (1986) Environmental Research Paper N 954; Palm, M., Theoretical Background SFIT4 (2013) in Sfit4 Error Analysis Workshop; http://data.gosat.nies.go.jp
Correspondence Address Chesnokova, T.Y.; V.E. Zuev Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences, pl. Akademika Zueva 1, Russian Federation; email: ches@iao.ru
Publisher Pleiades Publishing
Language of Original Document English
Abbreviated Source Title Atmos. Ocean. Opt.
Source Scopus