References |
Jouzel, J., A brief history of ice core science over the last 50 years (2013) Clim. Past., 9 (6), pp. 2525-2547; Meure, C., Etheridge, D., Trudinger, C., Steele, P., Langenfelds, R., van Ommen, T., Smith, A., Elkins, J., Law dome CO2, CH4, and N2O ice core records extended to 2000 years BP (2006) Geophys. Rev. Lett., 33; Solomon, S., Qin, D., Manning, M., Chen, Z., Marquis, M., Averyt, K.B., Tignor, M., Miller, H.L., Climate change 2007: The physical science basis (2007) Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change (IPCC), , University Press, Cambridge; Francey, R.J., Trudinger, C.M., van der Schoot, M., Law, R.M., Krummel, P.B., Langenfelds, R.L., Steele, L.P., Rodenbeck, C., Atmospheric verification of anthropogenic CO2 emission trends (2012) Nat. Clim. Change, 3 (5), pp. 520-524; Olivier, J.G.J., Janssens-Maenhout, G., Peters, J.A.H.W., (2012) Trends in Global CO2 Emissions, 2012 Report, , PBL Netherlands Environmental Assessment Agency, The Hague; Schneising, O., Buchwitz, M., Reuter, M., Heymann, J., Bovensmann, H., Burrows, J.P., Long-term analysis of carbon dioxide and methane column-averaged mole fractions retrieved from SCIAMACHY (2011) Atmos. Chem. Phys., 11 (6), pp. 2863-2880; Schneising, O., Heymann, J., Buchwitz, M., Reuter, M., Bovensmann, H., Burrows, J.P., Anthropogenic carbon dioxide source areas observed from space: Assessment of regional enhancements and trends (2013) Atmos. Chem. Phys., 13 (5), pp. 2445-2454; Schneising, O., Reuter, M., Buchwitz, M., Heymann, J., Bovensmann, H., Burrows, J.P., Terrestrial carbon sink observed from space: Variation of growth rates and seasonal cycle amplitudes in response to interannual surface temperature variability (2014) Atmos. Chem. Phys., 14 (1), pp. 133-141; Dlugokencky, E.J., Bruhwiler, L., White, J.W.C., Emmons, L.K., Novelli, P.C., Montzka, S.A., Masarie, K.A., Gatti, L.V., Observational constraints on recent increases in the atmospheric CH4 burden (2009) Geophys. Rev. Lett., 36 (18), p. 5; Rigby, M., Prinn, R.G., Fraser, P.J., Simmonds, P.G., Langenfelds, R.L., Huang, J., Cunnold, D.M., Porter, L.W., Renewed growth of atmospheric methane (2008) Geophys. Rev. Lett., 35 (22), p. 6; http://www.esrl.noaa.gov/gmd/ccgg/trends/; Kirschke, S., Bousquet, P., Ciais, P., Saunois, M., Canadell, J.G., Dlugokencky, E.J., Bergamaschi, P., Zeng, G., Three decades of global methane sources and sink (2013) Nat. Geosci., 6 (10), pp. 813-823; Bergamaschi, P., Houweling, H., Segers, A., Krol, M., Frankenberg, C., Scheepmaker, R.A., Dlugokencky, E., Gerbig, C., Atmospheric CH4 in the first decade of the 21st century: Inverse modeling analysis using SCIAMACHY satellite retrievals and NOAA surface measurements (2013) J. Geophys. Res., 118 (13), pp. 7350-7369; Ciais, P., Dolman, A.J., Bombelli, A., Duren, R., Peregon, A., Rayner, P.J., Miller, C., Zehner, C., Current systematic carbon cycle observations and needs for implementing a policy-relevant carbon observing system (2013) Biogeosciences Discuss, 10 (7), pp. 11447-11581; Houweling, S., Krol, M., Bergamaschi, P., Frankenberg, C., Dlugokencky, E.J., Morino, I., Notholt, J., Aben, I., A multi-year methane inversion using SCIAMACHY, accounting for systematic errors using TCCON measurements (2014) Atmos. Chem. Phys., 14 (8), pp. 3991-4012; Canadell, J.G., Ciais, P., Dhakal, S., Dolman, H., Friedlingstein, P., Gurney, K.R., Held, A., Raupach, M.R., Interactions of the carbon cycle, human activity, and the climate system: A research portfolio (2010) Curr. Opin. Environ. Sustainabil., 2 (4), pp. 301-311; Stephens, B.B., Gurney, K.R., Tans, P.P., Sweeney, C., Peters, W., Bruhwiler, L., Ciais, P., Denning, A.S., Weak northern and strong tropical land carbon uptake from vertical profiles of atmospheric CO2 (2007) Science, 316 (5832), pp. 1732-1735; Kuze, A., Suto, H., Nakajima, M., Hamazaki, T., Thermal and near infrared sensor for carbon observation fourier-transform spectrometer on the greenhouse gases observing satellite for greenhouse gases monitoring (2009) Appl. Opt., 48 (35), pp. 6716-6733; Yoshida, Y., Ota, Y., Eguchi, N., Kikuchi, N., Nobuta, K., Tran, H., Morino, I., Yokota, T., Retrieval algorithm for CO2 and CH4 column abundances from short-wavelength infrared spectral observations by the greenhouse gases observing satellite (2011) Atmos. Measur. Technol., 4 (4), pp. 717-734; Inoue, M., Morino, I., Uchino, O., Miyamoto, Y., Yoshida, Y., Yokota, T., Machida, T., Patra, P.K., Validation of XCO2 derived from SWIR spectra of GOSAT TANSO-FTS with aircraft measurement data (2013) Atmos. Chem. Phys., 13 (19), pp. 9771-9788; Tanaka, T., Miyamoto, Y., Morino, I., Machida, T., Nagahama, T., Sawa, Y., Matsueda, H., Uchino, O., Aircraft measurements of carbon dioxide and methane for the calibration of ground-based high-resolution fourier transform spectrometers and a comparison to GOSAT data measured over Tsukuba and Moshiri (2012) Atmos. Measur. Technol., 8 (5), pp. 2005-2012; Arshinov, M.Y., Belan, B.D., Davydov, D.K., Inoue, G., Krasnov, O.A., Machida, T., Maksutov, S.S., Fofonov, A.V., Organization of monitoring of the greenhouse gases and of the components oxidizing the atmosphere over Siberia and some results obtained. 1. Gas composition (2006) Atmos. Ocean. Opt., 19 (11), pp. 851-857; Arshinov, M.Y., Belan, B.D., Davydov, D.K., Inoue, G., Maksutov, S.S., Machida, T., Fofonov, A.V., Vertical distribution of greenhouse gases above Western Siberia by the long-term measurement data (2009) Atmos. Ocean. Opt., 22 (3), pp. 316-324; Arshinov, M.Y., Afonin, S.V., Belan, B.D., Belov, V.V., Gridnev, Y.V., Davydov, D.K., Machida, T., Fofonov, A.V., Comparison of satellite and aircraft measurements of gas composition in troposphere above the South of West Siberia (2013) Opt. Atmos. Okeana, 26 (9), pp. 773-782; Klonecki, A., Pommier, M., Clerbaux, C., Ancellet, G., Cammas, J.-P., Coheur, P.-F., Cozic, A., Turquety, S., Assimilation of IASI satellite CO fields into a global chemistry transport model for validation against aircraft measurements (2012) Atmos. Chem. Phys., 12 (10), pp. 4493-4512; Uspenskii, A.B., Kukharskii, A.V., Romanov, S.V., Rublev, A.N., Monitoring of carbon dioxide concentration and total methane in the troposphere over Siberia from AIRS and IASI satellite IR-sounders’ data (2011) Issled. Zemli Kosmosa, No. 1, pp. 14-21; Kukharskii, A.V., Uspenskii, A.B., Determination of tropospheric mean carbon dioxide concentration from satellite high spectral resolution IR-sounder data (2009) Rus, Meteorol. Hydrol., 34 (4), pp. 202-211; Kukharskii, A.V., Uspenskii, A.B., Monitoring of tropospheric carbon diosxide concentration over Siberian boreal ecosystems (2010) Sovremennye Problemy Distantsionnogo Zondirovaniya Zemli Kosmosa, 7 (4), pp. 204-211; Wunch, D., Toon, G.C., Wennberg, P.O., Wofsy, S.C., Stephens, B.B., Fischer, M.L., Uchino, O., Zondlo, M.A., Calibration of the total carbon column observing network using aircraft profile data (2010) Atmos. Measur. Technol., 3 (5), pp. 1351-1362; Hannigan, J.W., Coffey, M.T., Goldman, A., Semiautonomous FTS observation system for remote sensing of stratospheric and tropospheric gases (2009) J. Atmos. Ocean Technol., 26, pp. 1814-1828; Morino, I., Uchino, O., Inoue, M., Yoshida, Y., Yokota, T., Wennberg, P.O., Toon, G.C., Rettinger, M., Preliminary validation of column-averaged volume mixing ratios of carbon dioxide and methane retrieved from GOSAT short-wavelength infrared spectra (2011) Atmos. Measur. Technol., 4 (6), pp. 1061-1076; http://www.esa-ghg-cci.org/?q=node/95, J. Notholt, T. Blumenstock, D. Brunner, B. Buchmann, B. Dils, M. De Maziere, Ch. Popp, and R. Sussmann; Cogan, A.J., Boesch, H., Parker, R.J., Feng, L., Palmer, P.I., Blavier, J.-F.L., Deutscher, N.M., Wunch, D., Atmospheric carbon dioxide retrieved from the Greenhouse Gases Observing SATellite (GOSAT): Comparison with ground-based TCCON observations and GEOS-Chem model calculations (2012) J. Geophys. Res. Atmos., 117, p. 17; Gribanov, K., Jouzel, J., Bastrikov, V., Bonne, J.-L., Breon, F.-M., Butzin, M., Cattani, O., Zakharov, V., Developing a Western Siberia reference site for tropospheric water vapour isotopologue observations obtained by different techniques (in situ and remote sensing) (2014) Atmos. Chem. Phys., 14 (12), pp. 5943-5957; Keppel-Aleks, G., Toon, G.C., Wennberg, P.O., Deutscher, N.M., Reducing the impact of source brightness fluctuations on spectra obtained by Fouriertransform spectrometry (2007) Appl. Opt., 46 (21), pp. 4774-4779; Rodgers, C.D., (2000) Inverse Methods for Atmospheric Sounding: Theory and Practice, , World Scientific Publishing, Singapur; 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) Philos. Tr. Soc., A, 369 (1943), pp. 2087-2112; Rothman, L.S., Gordon, I.E., Barbe, A., Benner, D.C., Bernath, P.F., Birk, M., Boudon, V., Champion, J.P., The HITRAN 2008 Molecular Spectroscopic Database (2009) J. Quant. Spectrosc. Radiat. Transfer, 110 (9-10), pp. 533-572; Kalnay, E., Kanamitsu, M., Kistler, R., Collins, W., Deaven, D., Gandin, L., Iredell, M., Reynolds, R., The NCEP/NCAR 40-year reanalysis project (1996) Bull. Amer. Meteorol. Soc., 77 (3), pp. 437-471 |