Spatial coupling of nitrogen inputs and losses in the ocean (original) (raw)
References
Redfield, A. C., Ketchum, B. H. & Richards, F. A. in The Sea (ed. Hill, M. N.) Vol. 2 26–77 (Interscience, New York, 1963) Google Scholar
Karl, D. et al. The role of nitrogen fixation in biogeochemical cycling in the subtropical North Pacific Ocean. Nature388, 533–538 (1997) ArticleADSCAS Google Scholar
Falkowski, P. G. Evolution of the nitrogen cycle and its influence on the biological sequestration of CO2 in the ocean. Nature387, 272–275 (1997) ArticleADSCAS Google Scholar
Karl, D. et al. Dinitrogen fixation in the world’s oceans. Biogeochemistry57/58, 47–98 (2002) ArticleCAS Google Scholar
Broecker, W. S. & Henderson, G. M. The sequence of events surrounding Termination II and their implications for the cause of glacial-interglacial CO2 changes. Paleoceanography13, 352–364 (1998) ArticleADS Google Scholar
Codispoti, L. A. Biogeochemical cycles—Is the ocean losing nitrate?. Nature376, 724 (1995) ArticleADSCAS Google Scholar
Gruber, N. & Sarmiento, J. L. Global patterns of marine nitrogen fixation and denitrification. Glob. Biogeochem. Cycles11, 235–266 (1997) ArticleADSCAS Google Scholar
Letelier, R. M. & Karl, D. M. Trichodesmium spp. physiology and nutrient fluxes in the North Pacific subtropical gyre. Aquat. Microb. Ecol.15, 265–276 (1998) Article Google Scholar
Anderson, L. A. & Sarmiento, J. L. Redfield ratios of remineralization determined by nutrient data analysis. Glob. Biogeochem. Cycles8, 65–80 (1994) ArticleADSCAS Google Scholar
Conkright, M. E. et al. World Ocean Atlas 2001: Objective Analyses, Data Statistics, and Figures, CD-ROM Documentation 1–17 (National Oceanographic Data Center, Silver Spring, 2002)
Abell, J., Emerson, S. & Renaud, P. Distributions of TOP, TON and TOC in the North Pacific subtropical gyre: Implications for nutrient supply in the surface ocean and remineralization in the upper thermocline. J. Mar. Res.58, 203–222 (2000) ArticleCAS Google Scholar
Wu, J. F., Sunda, W., Boyle, E. A. & Karl, D. M. Phosphate depletion in the western North Atlantic Ocean. Science289, 759–762 (2000) ArticleADSCAS Google Scholar
Capone, D. G., Zehr, J. P., Paerl, H. W., Bergman, B. & Carpenter, E. J. Trichodesmium, a globally significant marine cyanobacterium. Science276, 1221–1229 (1997) ArticleCAS Google Scholar
Zehr, J. P. et al. Unicellular cyanobacteria fix N2 in the subtropical North Pacific Ocean. Nature412, 635–638 (2001) ArticleADSCAS Google Scholar
Codispoti, L. A. & Richards, F. A. An analysis of the horizontal regime of denitrification in the eastern tropical North Pacific. Limnol. Oceanogr.21, 379–388 (1976) ArticleADSCAS Google Scholar
Lehmann, M. F. et al. Origin of the deep Bering Sea nitrate deficit: Constraints from the nitrogen and oxygen isotopic composition of water column nitrate and benthic nitrate fluxes. Glob. Biogeochem. Cycles19 doi: 10.1029/2005GB002508 (2005)
Brandes, J. A., Devol, A. H., Yoshinari, T., Jayakumar, D. A. & Naqvi, S. W. A. Isotopic composition of nitrate in the central Arabian Sea and eastern tropical North Pacific: a tracer for mixing and nitrogen cycles. Limnol. Oceanogr.43, 1680–1689 (1998) ArticleADSCAS Google Scholar
Deutsch, C., Gruber, N., Key, R. M., Sarmiento, J. L. & Ganaschaud, A. Denitrification and N2 fixation in the Pacific Ocean. Glob. Biogeochem. Cycles15, 483–506 (2001) ArticleADSCAS Google Scholar
Hansell, D. A., Bates, N. R. & Olson, D. B. Excess nitrate and nitrogen fixation in the North Atlantic Ocean. Mar. Chem.84, 243–265 (2004) ArticleCAS Google Scholar
Capone, D. G. et al. Nitrogen fixation by Trichodesmium spp.: An important source of new nitrogen to the tropical and subtropical North Atlantic Ocean. Glob. Biogeochem. Cycles19 doi: 10.1029/2004GB002331 (2005)
Mahowald, N. et al. Dust sources and deposition during the last glacial maximum and current climate: A comparison of model results with paleodata from ice cores and marine sediments. J. Geophys. Res. Atmos.104, 15895–15916 (1999) ArticleADS Google Scholar
Sigman, D. M. et al. Coupled nitrogen and oxygen isotope measurements of nitrate along the eastern North Pacific margin. Glob. Biogeochem. Cycles19 doi: 10.1029/2005GB002458 (2005)
Gruber, N. in Carbon-Climate Interactions (eds Follows, M. & Oguz, T.) 97–148 (John Wiley & Sons, New York, 2003) Google Scholar
Deutsch, C., Sigman, D. M., Thunell, R., Meckler, A. N. & Haug, G. H. Isotopic Constraints on the Glacial/Interglacial Oceanic Nitrogen Budget. Glob. Biogeochem. Cycles18 doi: 10.1029/2003GB002189 (2004)
Codispoti, L. A. et al. The oceanic fixed nitrogen and nitrous oxide budgets: Moving targets as we enter the anthropocene? Sci. Mar.65, 85–101 (2001) ArticleCAS Google Scholar
Brandes, J. A. & Devol, A. H. A global marine fixed nitrogen isotopic budget: Implications for Holocene nitrogen cycling. Glob. Biogeochem. Cycles16 doi: 10.1029/2001GB001856 (2002)
Sarmiento, J. L. & Gruber, N. Ocean Biogeochemical Dynamics 118–119 (Princeton Univ. Press, Princeton, 2006) Google Scholar
Tanaka, T. N deficiency in a well-oxygenated cold bottom water over the Bering Sea shelf: Influence of sedimentary denitrification. Contin. Shelf Res.24, 1271–1283 (2004) ArticleADS Google Scholar
Dunne, J. P., Armstrong, R. A., Gnanadesikan, A. & Sarmiento, J. L. Empirical and mechanistic models for the particle export ratio. Glob. Biogeochem. Cycles19 doi: 10.1029/2004GB002390 (2004)
Gnanadesikan, A., Slater, R. D., Gruber, N. & Sarmiento, J. L. Oceanic vertical exchange and new production: a comparison between models and observations. Deep-Sea Res. II49, 363–401 (2002) ArticleADS Google Scholar