HR: 16:00h
AN: OS44B-01 [Abstracts]
TI: The Marine Carbon Cycle - A Global View From the Deep
AU: * Zabel, M
EM: mzabel@uni-bremen.de
AF: University of Bremen, Klagenfurter Str., Bremen, D-28205
Germany
AU: Seiter, K
EM: kseiter@uni-bremen.de
AF: University of Bremen, Klagenfurter Str., Bremen, D-28205
Germany
AU: Hensen, C
EM: chensen@ifm-geomar.de
AF: IFM-GEOMAR / Leibniz-Institute for Marine Sciences, Wischhofstr. 1-3, Kiel, D-24148
Germany
AB:
In this study we present a global distribution pattern and budget of the minimum flux of particulate organic carbon to the
sea floor (J$_{POC\alpha}$). The estimations are based on regionally specific correlations between the diffusive oxygen flux
across the sediment-water interface, the total organic carbon content in surface sediments, and the oxygen concentration in
bottom waters. For this, we modified the principal equation of Cai and Reimers (1995) as a basic monod reaction rate, applied
within 11 regions where in situ measurements of diffusive oxygen uptake exist. By application of the resulting transfer
functions to other regions with similar sedimentary conditions and areal interpolation, we calculated a minimum global budget
of particulate organic carbon that actually reaches the sea floor of $\sim$0.5 GtC yr$^{-1}$ ($>$1000 m wd), whereas
approximately 0.002-0.12 GtC yr$^{-1}$ is buried in the sediments (0.01-0.4 % of surface primary production). Despite the
fact that our global budget is in good agreement with previous studies, we found conspicuous differences among the
distribution patterns of primary production, calculations based on particle trap collections of the POC flux, and
J$_{POC\alpha}$ of this study. These deviations, especially located at the southeastern and southwestern Atlantic Ocean, the
Greenland and Norwegian Sea and the entire equatorial Pacific Ocean, strongly indicate a considerable influence of lateral
particle transport on the vertical link between surface waters and underlying sediments. This observation is supported by
sediment trap data. Furthermore, local differences in the availability and quality of the organic matter as well as different
transport mechanisms through the water column are discussed.
UR: http://www.rcom-bremen.de
DE: 4863 Sedimentation
DE: 3022 Marine sediments--processes and transport
DE: 1050 Marine geochemistry (4835, 4850)
DE: 0330 Geochemical cycles
DE: 0400 Biogeosciences
SC: Ocean Sciences [OS]
MN: 2004 AGU Fall Meeting