Non‐Redfield carbon and nitrogen cycling in the Arctic: Effects of ecosystem structure and dynamics
- 15 February 1999
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research: Oceans
- Vol. 104 (C2) , 3185-3199
- https://doi.org/10.1029/1998jc900071
Abstract
The C:N ratio is a critical parameter used in both global ocean carbon models and field studies to understand carbon and nutrient cycling as well as to estimate exported carbon from the euphotic zone. The so‐called Redfield ratio (C:N = 6.6 by atoms) [Redfield et al., 1963] is widely used for such calculations. Here we present data from the NE Greenland continental shelf that show that most of the C:N ratios for particulate (autotrophic and heterotrophic) and dissolved pools and rates of transformation among them exceed Redfield proportions from June to August, owing to species composition, size, and biological interactions. The ecosystem components that likely comprised sinking particles and had relatively high C:N ratios (geometric means) included (1) the particulate organic matter (C:N = 8.9) dominated by nutrient‐deficient diatoms, resulting from low initial nitrate concentrations (approximately 4 μM) in Arctic surface waters; (2) the dominant zooplankton, herbivorous copepods (C:N = 9.6), having lipid storage typical of Arctic copepods; and (3) copepod fecal pellets (C:N = 33.2). Relatively high dissolved organic carbon concentrations (median 105 μM) were approximately 25 to 45 μM higher than reported for other systems and may be broadly characteristic of Arctic waters. A carbon‐rich dissolved organic carbon pool also was generated during summer. Since the magnitude of carbon and nitrogen uncoupling in the surface mixed layer appeared to be greater than in other regions and occurred throughout the productive season, the C:N ratio of particulate organic matter may be a better conversion factor than the Redfield ratio to estimate carbon export for broad application in northern high‐latitude systems.Keywords
This publication has 93 references indexed in Scilit:
- Pathways of carbon cycling in the euphotic zone: the fate of largesized phytoplankton in the Northeast Water PolynyaJournal of Plankton Research, 1998
- Nutrients, organic carbon and organic nitrogen in the upper water column of the Arctic Ocean: implications for the sources of dissolved organic carbonDeep Sea Research Part II: Topical Studies in Oceanography, 1997
- Effects of plankton dynamics on seasonal carbon fluxes in an ocean general circulation modelGlobal Biogeochemical Cycles, 1996
- Dissolved organic carbon in the upper ocean of the central equatorial Pacific Ocean, 1992: Daily and finescale vertical variationsDeep Sea Research Part II: Topical Studies in Oceanography, 1995
- Uptake of inorganic carbon and nitrate by marine plankton and the Redfield RatioGlobal Biogeochemical Cycles, 1994
- On the trophic fate of Phaeocystis pouchetti (Harriot). V. Trophic relationships between Phaeocystis and zooplankton: an assessment of methods and size dependenceJournal of Plankton Research, 1994
- Northeast water polynya: Polar sea cruise resultsEos, 1993
- Downward transport and fate of organic matter in the ocean: Simulations with a general circulation modelGlobal Biogeochemical Cycles, 1992
- Ocean flux studies: A status reportReviews of Geophysics, 1990
- Copepods in Fram Strait in summer: Distribution, feeding and metabolismJournal of Marine Research, 1988