Articles | Volume 15, issue 11
https://doi.org/10.5194/acp-15-6247-2015
https://doi.org/10.5194/acp-15-6247-2015
Research article
 | 
08 Jun 2015
Research article |  | 08 Jun 2015

Sources, transport and deposition of iron in the global atmosphere

R. Wang, Y. Balkanski, O. Boucher, L. Bopp, A. Chappell, P. Ciais, D. Hauglustaine, J. Peñuelas, and S. Tao

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Cited articles

Arimoto, R., Duce, R. A., Savoie, D. L., and Prospero, J. M.: Trace-elements in aerosol-particles from Bermuda and Barbados – concentrations, sources and relationships to aerosol sulfate, J. Atmos. Chem., 14, 439–457, https://doi.org/10.1007/Bf00115250, 1992.
Arimoto, R., Duce, R. A., Ray, B. J., Ellis, W. G., Cullen, J. D., and Merrill, J. T.: Trace elements in the atmosphere over the North-Atlantic, J. Geophys. Res.-Atmos., 100, 1199–1213, https://doi.org/10.1029/94jd02618, 1995.
Arimoto, R., Duce, R. A., Ray, B. J., and Tomza, U.: Dry deposition of trace elements to the western North Atlantic, Global Biogeochem. Cy., 17, 1010, https://doi.org/10.1029/2001gb001406, 2003.
Baker, A. R. and Jickells, T. D.: Mineral particle size as a control on aerosol iron solubility, Geophys. Res. Lett., 33, L17608, https://doi.org/10.1029/2006gl026557, 2006.
Baker, A. R., Jickells, T. D., Witt, M., and Linge, K. L.: Trends in the solubility of iron, aluminium, manganese and phosphorus in aerosol collected over the Atlantic Ocean, Mar. Chem., 98, 43–58, https://doi.org/10.1016/j.marchem.2005.06.004, 2006.
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This study makes a first attempt to estimate the temporal trend of Fe emissions from anthropogenic and natural combustion sources from 1960 to 2007 and the emissions of Fe from mineral dust based on a recent mineralogical database. The new emission inventory is introduced into a global aerosol model. The simulated total Fe and soluble Fe concentrations in surface air as well as the deposition of total Fe are evaluated by observations over major continental and oceanic regions globally.
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