Distribution and cycling of terrigenous dissolved organic matter in the ocean (original) (raw)
References
Hedges, J. I. Global biogeochemical cycles: progress and problems. Mar. Chem.39, 67–93 (1992). ArticleCAS Google Scholar
Meyers-Schulte, K. J. & Hedges, J. I. Molecular evidence for a terrestrial component of organic matter dissolved in ocean water. Nature321, 61–63 (1986). ArticleADSCAS Google Scholar
Baumgartner, A. & Reichel, E. The World Water Balance (Oldenberg, Munich, 1975). Google Scholar
Sverdrup, H. U., Johnson, M. W. & Fleming, R. H. The Oceans (Prentice-Hall, Englewood Cliffs, NJ, 1942). Google Scholar
Broecker, W. S. & Peng, T.-H. Tracers in the Sea (Lamont-Doherty Geological Observatory, Columbia Univ., Palisades, New York, 1982). Google Scholar
Williams, P. M. & Druffel, E. R. M. Radiocarbon in dissolved organic matter in the central North Pacific Ocean. Nature330, 246–248 (1987). ArticleADSCAS Google Scholar
Bauer, J. E., Williams, P. M. & Druffel, E. R. M. 14C activity of dissolved organic carbon fractions in the north-central Pacific and Sargasso Sea. Nature357, 667–670 (1992). ArticleADSCAS Google Scholar
Meybeck, M. Carbon, nitrogen, and phosphorous transport by world rivers. Am. J. Sci.282, 401–450 (1982). ArticleADSCAS Google Scholar
Ertel, J. R., Hedges, J. I., Devol, A. H., Richey, J. E. & Ribeiro, M. Dissolved humic substances in the Amazon River system. Limnol. Oceanogr.31, 739–754 (1986). ArticleADSCAS Google Scholar
Ittekkot, V. Global trends in the nature of organic matter in river suspensions. Nature332, 436–438 (1988). ArticleADSCAS Google Scholar
Hedges, J. I., Hatcher, P. G., Ertel, J. R. & Meyers-Schulte, K. J. A comparison of dissolved humic substances from seawater with Amazon River counterparts by 13C-NMR spectrometry. Geochim. Cosmochim. Acta56, 1753–1757 (1992). ArticleADSCAS Google Scholar
Benner, R., Pakulski, J. D., McCarthy, M., Hedges, J. I. & Hatcher, P. G. Bulk chemical characteristics of dissolved organic matter in the ocean. Science255, 1561–1564 (1992). ArticleADSCAS Google Scholar
Hedges, J. I. & Mann, D. C. The characterization of plant tissues by their lignin oxidation products. Geochim. Cosmochim. Acta43, 1803–1807 (1979). ArticleADSCAS Google Scholar
Benner, R. in Marine Particles: Analysis and Characterization (eds Hurde, D. C. & Spencer, D. W.) 181–185 (Geophys. Monogr. 63, American Geophysical Union, Washington DC, 1991). Google Scholar
Benner, R. & Hedges, J. I. A test of the accuracy of freshwater DOC measurements by high-temperature catalytic oxidation and UV-promoted persulfate oxidation. Mar. Chem.41, 161–165 (1993). ArticleCAS Google Scholar
Zafiriou, O. C., Gagosian, R. B., Peltzer, E. T. & Alford, J. B. Air-to-sea fluxes of lipids at Enewetak Atoll. J. Geophys. Res.90, 2409–2423 (1985). ArticleADSCAS Google Scholar
Hedges, J. I. & Ertel, J. R. Characterization of lignin by capillary chromatography of cupric oxide oxidation products. Anal. Chem.54, 174–178 (1982). ArticleCAS Google Scholar
Moran, M. A., Pomeroy, L. R., Sheppard, E. S., Atkinson, L. P. & Hodson, R. E. Distribution of terrestrially derived dissolved organic matter on the southeastern U.S. continental shelf. Limnol Oceanogr.36, 1134–1149 (1991). ArticleADSCAS Google Scholar
Opsahl, S. & Benner, R. Early diagenesis of vascular plant tissues: lignin and cutin decomposition and biogeochemical implications. Geochim. Cosmochim. Acta59, 4889–4904 (1995). ArticleADSCAS Google Scholar
Stuiver, M., Quay, P. D. & Ostlund, H. G. Abyssal water carbon-14 distribution and the age of the world oceans. Science219, 849–851 (1983). ArticleADSCAS Google Scholar
Sholkovitz, E. R. The removal of dissolved humic acids and iron during estuarine mixing. Earth Planet. Sci. Lett.40, 130–136 (1978). ArticleADSCAS Google Scholar
Mantoura, R. F. C. & Woodward, E. M. S. Conservative behaviour of riverine dissolved organic carbon in the Severn Estuary: chemical and geochemical implications. Geochim. Cosmochim. Acta47, 1293–1309 (1983). ArticleADSCAS Google Scholar
Gardner, W. & Stephens, J. A. Stability and composition of terrestrially derived dissolved organic nitrogen in continental shelf surface waters. Mar. Chem.6, 335–342 (1978). ArticleCAS Google Scholar
Amon, R. M. W. & Benner, R. Photochemical and microbial consumption of dissovled organic carbon and dissolved oxygen in the Amazon River. Geochim. Cosmochim. Acta60, 1783–1792 (1996). ArticleADSCAS Google Scholar
Kieber, R. J., Zhou, X. & Mopper, K. Formation of carbonyl compounds from UV-induced photodegradation of humic substances in natural waters: fate of riverine carbon in the sea. Limnol. Oceanogr.35, 1503–1515 (1990). ArticleADSCAS Google Scholar
Miller, W. L. & Zepp, R. G. Photochemical production of dissolved inorganic carbon from terrestrial organic matter: significance to the oceanic organic carbon cycle. Geophys. Res. Lett.22, 417–420 (1995). ArticleADSCAS Google Scholar
Benner, R., Opasahl, S., Chin-Leo, G., Richey, J. E. & Forsberg, B. R. Bacterial carbon metabolism in the Amazon River. Limnol. Oceanogr.40, 1262–1270 (1995). ArticleADS Google Scholar
Pakulski, J. D., Benner, R., Amon, R. M. W., Eadie, B. & Whitledge, T. Community metabolism and nutrient cycling in the Mississippi River plume: evidence for intense nitrification at intermediate salinities. Mar. Ecol. Prog. Ser.117, 207–218 (1995). ArticleADS Google Scholar
Bushaw, K. L. et al. Photochemical release of biologically available nitrogen from aquatic dissolved organic matter. Nature381, 404–407 (1996). ArticleADSCAS Google Scholar
Martin, J. H., Knauer, G. A., Karl, D. M. & Broenkow, W. W. VERTEX: carbon cycling in the northeast Pacific. Deep-Sea Res.34, 267–285 (1987). ArticleADSCAS Google Scholar