The Global Atmospheric Environment for the Next Generation Page: 3 of 21
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The global atmospheric environment for the next generation
F.Denteneri, D.Stevenson2, K.Ellingsen3, T.van Noije4, M.Schultz g, M.Amanns,
C.Atherton12, N.Bell9, D.Bergmann , I.Bey , L.Bouwman6, T.Butler14, J.Cofala5,
B.Collins20, J.Drevet , R.Doherty2, B.Eickhout6, H.Eskes4, A.Fiore16,M.Gauss3,
D.Hauglustaine13, L.Horowitz16, I.S.A. Isaksen3, B.Josse , M.Lawrence14, M.Krol,
J.F.Lamarque , V.Montanaro , J.F.Miiller", V.H.Peuch , G.Pitari , J.Pyle19,S.Rast18
J.Rodriguez , M.Sanderson20, N.H.Savage19, D.Shindell9, S.Strahan , S.Szopa13,
K.Sudo , R.Van Dingeneni,O.Wild , G.Zeng19
1. Joint Research Centre, Institute for Environment and Sustainability, Ispra, Italy.
2. University of Edinburgh, School of Geosciences, United Kingdom.
3. University of Oslo, Department of Geosciences, Norway.
4. Royal Netherlands Meteorological Institute (KNMI), De Bilt, the Netherlands.
5. IIASA, International Institute for Applied Systems Analysis, Laxenburg, Austria.
6. Netherlands Environmental Assessment Agency (RIVM/MNP), Bilthoven, The
7. Frontier Research Center for Global Change, JAMSTEC, Yokohama, Japan.
8. Swiss Federal Institute of Technology (EPFL), Lausanne, Switzerland.
9. NASA-Goddard Institute for Space Studies, New York, USA.
10. Goddard Earth Science & Technology Center (GEST), Maryland, USA.
11. Belgian Institute for Space Aeronomy, Brussels, Belgium.
12. Lawrence Livermore National Laboratory, Atmospheric Science Division, Livermore,
13. CEA/CNRS, Laboratoire des Sciences du Climat et de l'Environnement, Gif-sur-
14. Max Planck Institute for Chemistry, Mainz, Germany.
15. Meteo-France, CNRM/GMGEC/CATS, Toulouse, France.
16. NOAA GFDL, Princeton, NJ, USA.
17. National Center of Atmospheric Research, Atmospheric Chemistry Division,
Boulder, CO, USA.
18. Max Planck Institute for Meteorology, Hamburg, Germany.
19. University of Cambridge, Centre of Atmospheric Science, United Kingdom.
20. Met Office, Exeter, United Kingdom.
21. University L'Aquila, Dipartimento di Fisica, Italy.
22. University of Miami/NASA-Goddard Space Flight Center
Submitted ES&T, 01.12.2005
Air quality, ecosystem exposure to nitrogen deposition, and climate change are intimately
coupled problems: we assess changes in the global atmospheric environment between
2000 and 2030 using twenty-five state-of-the-art global atmospheric chemistry models
and three different emissions scenarios. The first (CLE) scenario reflects implementation
of current air quality legislation around the world, whilst the second (MFR) represents a
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Dentener, F; Stevenson, D; Ellingsen, K; van Joije, T; Schultz, M; Amann, M et al. The Global Atmospheric Environment for the Next Generation, article, December 7, 2005; Livermore, California. (digital.library.unt.edu/ark:/67531/metadc873957/m1/3/: accessed January 19, 2019), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.