Articles | Volume 13, issue 5
https://doi.org/10.5194/acp-13-2723-2013
https://doi.org/10.5194/acp-13-2723-2013
Research article
 | 
08 Mar 2013
Research article |  | 08 Mar 2013

Sensitivity of cloud condensation nuclei to regional changes in dimethyl-sulphide emissions

M. T. Woodhouse, G. W. Mann, K. S. Carslaw, and O. Boucher

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Cited articles

Albrecht, B. A.: Aerosols, cloud microphysics, and fractional cloudiness, Science, 245, 1227–1230, 1989.
Andreae, M. O., Elbert, W., Cai, Y., Andreae, T. W., and Gras, J.: Non-sea-salt sulfate, methanesulfonate, and nitrate aerosol concentrations and size distributions at Cape Grim, Tasmania RID B-1068-2008, J. Geophys. Res.-Atmos., 104, 21695–21706, 1999.
Ayers, G. P. and Cainey, J. M.: The CLAW hypothesis: a review of the major developments, Environ. Chem., 4, 366–374, 2007.
Barnes, I., Hjorth, J., and Mihalopoulos, N.: Dimethyl sulfide and dimethyl sulfoxide and their oxidation in the atmosphere, Chem. Rev., 106, 940–975, 2006.
Bopp, L., Boucher, O., Aumont, O., Belviso, S., Dufresne, J. L., Pham, M., and Monfray, P.: Will marine dimethylsulfide emissions amplify or alleviate global warming? A model study, Can. J. Fish. Aquat. Sci., 61, 826–835, 2004.
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