HR: 10:50h
AN: OS51D-03 INVITED [PDF]
TI: Organic Carbon and its Isotopic Composition in Surficial Sediments From the Western Adriatic
Continental Shelf
AU: * Miserocchi, S
EM: stefano.miserocchi@ismar.cnr.it
AF: ISMAR-CNR, Sezione Geologia Marina, Via P. Gobetti, 101, Bologna, 40129
Italy
AU: Langone, L
EM: leonardo.langone@ismar.cnr.it
AF: ISMAR-CNR, Sezione Geologia Marina, Via P. Gobetti, 101, Bologna, 40129
Italy
AU: Palinkas, C M
EM: cpalinka@u.washington.edu
AF: University of Washington, School of Oceanography, Box 357940, Seattle, WA 98195 United States
AU: Nittrouer, C A
EM: nittroue@ocean.washington.edu
AF: University of Washington, School of Oceanography, Box 357940, Seattle, WA 98195 United States
AB:
Continental shelves play an important role in the global carbon cycle because they represent the largest modern repository of
particulate organic carbon. However, recent studies indicate that the role of shelves as sinks for C$_{org}$ is still poorly
known in details, suggesting that more understanding of sedimentary processes affecting the distribution and preservation of
organic matter on the continental shelves is required. The western Adriatic continental shelf receives inputs of
allochthonous, terrestrial organic carbon via rivers and autochthonous, marine organic carbon from coastal biological
productivity. In the northern region, the Po river dominates the supply of organic carbon. The central coast is characterized
by a series of small, distributed fluvial sources draining the Apennine mountains. In this region, modern sedimentation
occurs on a clayey-silt shelf clinoform oriented parallel to the coastline. The organic carbon content of surface sediments
collected during 2 cruises (April 2002 and October 2002) follows the same pattern of fine sediment dispersal. The highest
values (from 0.60 to 1.71 wt%) were recorded close to the Po river delta, while in the central Adriatic the contents range
from 0.11 to 0.91 wt%, with slightly higher values toward the bottomset region and negligible along-shelf variability.
Riverine contributions measured on sediment collected along the axis of some rivers (Po, Uso, Marecchia and Aso), are
characterized by intermediate C$_{org}$ contents (from 0.56 to 0.82 wt%), and very negative $\delta^{13}$C$_{org}$ values
ranging from -25.39 to -26.47$\permil$. The $\delta^{13}$C$_{org}$ distribution of surface sediments near the Po delta shows
a clear increasing trend with distance from the river mouth, as a consequence of the decrease in the contribution of
terrestrial organic carbon and the increase of marine carbon. The signature of terrestrial C$_{org}$ is almost lost at about
9 km offshore the Po river's mouths. The sedimentary $\delta^{13}$C$_{org}$ values in the central Adriatic Sea suggest an
overall dominance of the organic matter of terrestrial origin and a stronger influence of terrigenous organics close to the
mouths of the Chienti, Pescara and Sangro rivers. Small seasonal variations of the carbon stable isotopes were observed and
tentatively related to hydrodynamical conditions. Across-shelf variability of organic carbon accumulation rates, based on
$^{210}$Pb chronologies, is fairly small in front of the Chienti River, and well apparent offshore the Tronto River, with
maximum values of 45 and 84 g C m$^{-2}$y$^{-1}$, respectively, occurring in the foreset of the modern clinoform. The
isotopic composition of organic matter in marine sediments is often used to identify its source and transport pathways. Many
workers have determined the relative proportions of marine and terrestrial organic carbon in sediments from the study of its
isotopic composition. On the basis of suspended matter and sediment collected both in fluvial and marine environments, we
have determined $\delta^{13}$C$_{org}$ values of -18.5$\permil$ as end member for marine organic matter and -26.5$\permil$
for terrigenous.
DE: 3022 Marine sediments--processes and transport
DE: 4835 Inorganic marine chemistry
DE: 4863 Sedimentation
SC: Ocean Sciences [OS]
MN: 2003 Fall Meeting