Articles | Volume 10, issue 15
https://doi.org/10.5194/acp-10-7425-2010
https://doi.org/10.5194/acp-10-7425-2010
10 Aug 2010
 | 10 Aug 2010

Quantification of DMS aerosol-cloud-climate interactions using the ECHAM5-HAMMOZ model in a current climate scenario

M. A. Thomas, P. Suntharalingam, L. Pozzoli, S. Rast, A. Devasthale, S. Kloster, J. Feichter, and T. M. Lenton

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Cited articles

Albrecht, B.: Aerosols, Cloud Microphysics, and Fractional Cloudiness, Science, 245, 1227–1230, 1989.
Andersson, A., Bakan, S., Karsten, F., Grassl, H., Klepp, C.-P., and Schulz, J.: Hamburg Ocean Atmosphere Parameters and Fluxes from Satellite Data – HOAPS-3-monthly mean, World Data Center for Climate, 2007.
Andreae, M. O., Wolfgang, E., and de Mora, S.: Biogenic sulfur emissions and aerosols over the tropical South Atlantic 3. Atmospheric dimethylsulfide, aerosols and cloud condensation nuclei, J. Geophys. Res., 100, 11335–11356, 1995.
Auvray, M., Bey, I., Llull, E., Schultz, M. G., and Rast, S.: A model investigation of tropospheric ozone chemical tendencies in long-range transported pollution plumes, J. Geophys. Res., 112, D05304, https://doi.org/10.1029/2006JD007137, 2007.
Ayers, G. and Gras, J.: Seasonal relationships between cloud condensation nuclei and aerosol methane sulphonate in marine air, Nature, 353, 834–835, 1991.
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