Articles | Volume 11, issue 3
https://doi.org/10.5194/acp-11-1101-2011
https://doi.org/10.5194/acp-11-1101-2011
Research article
 | 
09 Feb 2011
Research article |  | 09 Feb 2011

Anthropogenic sulfur dioxide emissions: 1850–2005

S. J. Smith, J. van Aardenne, Z. Klimont, R. J. Andres, A. Volke, and S. Delgado Arias

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Subject: Aerosols | Research Activity: Atmospheric Modelling and Data Analysis | Altitude Range: Troposphere | Science Focus: Chemistry (chemical composition and reactions)
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Cited articles

Andreae, M. O. and Merlet, P.: Emissions of trace gases and aerosols from biomass burning: Global Biogeochem. Cy., 15, 955–966, https://doi.org/10.1029/2000GB001382, 2001.
Andres, R. J., Fielding, D. J., Marland, G., Boden, T. A., and Kumar, N.: Carbon dioxide emissions from fossil-fuel use, 1751–1950, Tellus, 51, 759–765, 1999.
Arndt, R. L., Carmichael, G. R., Streets, D. G., and Bhatti, N.: Sulfur dioxide emissions and sectorial contributions to sulfur deposition in Asia, Atmos Environ., 31, 1553–2310, https://doi.org/10.1016/S1352-2310(96)00236-1, 1997.
Benkovitz, C. M., Scholtz, M. T., Pacyna, J., Tarrason, L., Dignon, E. C., Voldner, P. A., Spiro, Logan, J. A., and Graedel, T. A.: Global gridded inventories of anthropogenic emissions of sulphur and nitrogen, J. Geophys. Res., 101(D22), 29239–29253, https://doi.org/10.1029/96JD00126, 1996.
Bond, T. C., Streets, D. G., Yarber, K. F., Nelson, S. M., Woo, J.-H., and Klimont, Z.: A technology-based global inventory of black and organic carbon emissions from combustion, J. Geophys. Res., 109, D14203, https://doi.org/10.1029/2003JD003697, 2004.
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