Mouchet, Anne ; Université de Liège - ULiège > Département d'astrophys., géophysique et océanographie (AGO) > Labo de physique atmosphérique et planétaire (LPAP)
François, Louis ; Université de Liège - ULiège > Département d'astrophys., géophysique et océanographie (AGO) > Modélisation du climat et des cycles biogéochimiques
Language :
English
Title :
Sensitivity of a global oceanic carbon cycle model to the circulation and to the fate of organic matter: preliminary results
Anderson, L. and Sarmiento, J., Global ocean phosphate and oxygen simulations, Global Biogeochemical Cycles, 9, 621-636, 1995.
Bacastow, R. and Maier-Reimer, E, Ocean-circulation model of the carbon cycle, Climate Dynamics, 4, 95-125, 1990.
Benson, B. and Krause, D., The concentration and isotopic fractionation of oxygen dissolved in freshwater and seawater in equilibrium with the atmosphere, Limnology and Oceanography, 29, 620-632, 1984.
Berner, E. and Berner, R., The global water cycle, Geochemistry and environment, Prentice Hall, 397p., 1987.
Berner, R., Sedimentation and dissolution of pteropods in the ocean, in The fate of fossil fuel CO2 in the ocean, edited by N. Andersen and A. Malahoff, pp. 243-260, Plenum Press, N.Y., 1977.
Broecker, W. and Peng, T., Tracers in the sea, Columbia University Press, N.Y, 690p, 1982.
Carrada, G., Hopkins, T., Jeftié, L., and Morcos, S., eds., Quantitative analysis and simulation of Mediterranean coastal ecosystems: The Gulf of Naples, a case study, vol. 20 of Unesco reports in marine sciences, Unesco, Paris, 158p., 1983.
Deleersnijder, E. and Campin, J.-M., On the computation of the barotropic mode of a free-surface World Ocean model, Annales Geophysical, 13, 675-688, 1995.
Fabry, V., Aragonite production by pteropod mollusks in the subarctic Pacific, Deep-Sea Research, 36, 1735-1751, 1989.
Fasham, M., Modeling of the marine biota, in The global carbon cycle, edited by M. Heimann, vol. I15 of NATO ASI, pp. 457-504, Springer Verlag, Berlin, 1993.
Longhurst, A., Role of the marine biosphere in the global carbon cycle, Limnology and Oceanography, 36, 1507-1526, 1982.
Maier-Reimer, E., Geochemical cycles in an ocean general circulation model. Pre-industrial tracer distribution. Global Biogeochemical Cycles, 7, 645-677, 1993.
Maier-Reimer, E., Mikolajewicz, U., and Hasselman, K., Mean circulation of the hamburg LSG-OGCM and its sensitivity to the thermohaline surface forcing, Journal of Physical Oceanography, 23, 731-757, 1993.
Matear, R. and Holloway, G., Modeling the inorganic phosphorus cycle of the North Pacific using an adjoint data assimilation model to assess the role of dissolved organic phosphorus, Global Biogeochemical Cycles, 9, 101-119, 1995.
NODC, World ocean atlas 1994. Volume 1: nutrients, National Oceanographic Data Center, NOAA, Washington DC, 150p., 1994.
Probst, J.-L., Géochimie et hydrologie de l'érosion continentale. Mécanismes, bilan global actuel et fluctuations au cours des 550 derniers millions d'années, vol. 94 of Mémoires Sciences Géologiques, ULP-CNRS, Strasbourg, France, 164p., 1992.
Sarmiento, J. and Orr, J., Three-dimensional simulations of the impact of southern ocean nutrient depletion on atmospheric CO2 and ocean chemistry, Limnology and Oceanography, 36, 1928-1950, 1991.
Shaffer, G., Effects of the marine biota on global carbon cycling, in The global carbon cycle, edited by M. Heimann, vol. I15 of NATO ASI, pp. 431-455, Springer Verlag, Berlin, 1993.
Siegenthaler, U., Modeling the present-day oceanic carbon cycle, in The global carbon cycle, edited by M. Heimann, vol. I15 of NATO ASI, pp. 367-395, Springer Verlag, Berlin, 1993.
Takahashi, T., Broecker, W., and Bainbridge, A., The alkalinity and total carbon dioxide concentration in the world ocean, in Carbon cycle modeling, edited by B. Bolin, pp. 271-286, John Wiley and Sons, New-York, 1981.
Takahashi, T., Broecker, W., and Langer, S., Redfield ratio based on chemical data from isopycnal surfaces, Journal of Geophysical Research, 90, 6907-6924, 1985.
Tans, P., Fung, I., and Takahashi, T., Observational constraints on the global atmospheric CO2 budget, Science, 247, 1431-1438, 1990.