References
335
[93] R. P. Mason, W.F. Fitzgerald, F.M.M Morel. The biogeochemical cycling
of elemental mercury. Anthropogenic influences. Geochim. Cosmochim.
Acta, 58 :3191-3198, 1994.
[94] M.J. Molemaker, J. Vila-Guerau de Arellano. Control of chemical reactions by convective turbulence in the boundary layer. J. Atmos. Sci.,
55 :568-579, 1998.
[95] B. Nemery, P. Hoet, A. Nemmar. The Meuse Valley fog of 1930 : an air
pollution disaster. Lancet, 357 :704-708, 2001.
[96] S. Nemesure, R. Wagener, S.E. Schwartz. Direct shortwave forcing of
climate by the anthropogenic sulfate aerosol: sensitivity to particle size,
composition, and relative humidity. J. Geophys. Res., 100(D12) :2610526116, 1995.
[97] A. Nenes, S.N. Pandis, C. Pilinis. ISORROPIA: A new thermodynamic equilibrium model for multicomponent inorganic aerosols. Aquatic
geochemistry, 4 :123-152, 1998.
[98] K. Nodop, editor. ETEX symposium on long-range atmospheric transport, model verification and emergency response, May 1997. Vienna (Austria) .
[99] E. Naslund, L. Thaning. On the settling velocity in a nonstationary
atmosphere. Aerosol Sci. and Technol., 14 :247-256, 1991.
[100] Office of Air and US EPA Radiation. Performance of selective catalytic
reduction on coal-fired steam generating units. Acid Rain Program, June
1997. Final Report.
[101] T.R. Oke. City size and the urban heat island. Atmos. Env., 7 :769-779,
1973.
[102] T.R. Oke. Boundary layer Climates. Routledge, 1987.
[103] Intergovernmental Panel on Climate Change. Climate Change 2001.
IPCC Third Assessment Report. The Scientific Basis, 2001. WMO and
UNEP.
[104] C. Papastefanou. Residence time of tropospheric aerosols in association
with radioactive nuclides. Applied Radiation and Isotopes, 64 :93-100,
2006.
[105] R.J. Park, D.J. Jacob, N. Kumar, R.M. Yantosca. Regional visibility
statistics in the United States : Natural and transboundary pollution
influences, and implications for the Regional Haze Rule. Atmos. Env.,
40 :5405-5423, 2006.
[106] S.H. Park, S.N. Rogak, W.K. Bushe, J.Z. Wen, M.J. Thomson. An aerosol
model to predict size and structure of soot particles. Combust. Theory
Model., 9(3) :499 :513,2005.
[107] R. Pielke. Mesoscale Meteorological Modelling. Academic Press, 1984.
Précédent

- 339/349

Suivant