HR: 1525h
AN: B13G-08 INVITED [Abstracts]
TI: Non-riverine pathways of terrigenous carbon to the ocean
AU: * Dittmar, T
EM: dittmar@ocean.fsu.edu
AF: Florida State University, Department of Oceanography, Tallahassee, FL 32306-4320,
United States
AB:
The extent and nature of non-riverine fluxes of carbon from land to ocean are poorly understood. Tidal pumping
from highly productive coastal environments, atmospheric deposition and submarine groundwater discharge can
be significant transport mechanisms for carbon to the ocean. Evidence is mounting that tidally-induced
porewater fluxes ("outwelling") of dissolved organic matter (DOM) from mangroves and salt marshes alone may
be similar in magnitude as the global riverine flux of DOM. Tidal pumping of dissolved inorganic carbon (DIC)
might exceed organic carbon fluxes by far, but the existing knowledge on DIC outwelling is too scarce for a first
global estimate. Results from two case studies on the biogeochemistry of DOM outwelling are presented, from
the mangroves in Northern Brazil and the salt marshes in the Northern Gulf of Mexico. Ongoing research in the
Northern Gulf of Mexico indicates that outwelling and groundwater inputs probably exceed riverine DOM fluxes in
this region. Similar observations were made in Northern Brazil. There, the fate of mangrove-derived DOM could be
traced from its source in the mangrove sediments to the outer North Brazil shelf by using a combination of
isotopic and molecular approaches. Reversed-phase liquid chromatography / mass spectrometry (LC/MS)
provided a multifaceted array of information that mirrors the molecular complexity of DOM. Statistical analyses on
these data revealed significant differences between mangrove and open-ocean DOM which successively
disappeared by irradiating the samples with natural sunlight. Nuclear magnetic resonance analyses yielded
concurrent results. Ultrahigh-resolution Fourier transform-ion cyclotron resonance mass spectrometry (FT-ICR
MS) is the only technique capable of resolving and identifying individual elemental compositions in these complex
mixtures. We applied this technique for characterizing mangrove-derived DOM and to assess the molecular
changes that occur in the initial stages of outwelling. The different approaches concordantly show the presence of
photodegraded mangrove DOM on the North Brazil shelf. During transport offshore, sunlight efficiently destroyed
aromatic molecules, removing about one third of mangrove-derived DOM. The remainder was refractory and may
thus be distributed over the oceans.
DE: 0414 Biogeochemical cycles, processes, and modeling (0412, 0793, 1615, 4805, 4912)
DE: 0442 Estuarine and nearshore processes (4235)
DE: 4806 Carbon cycling (0428)
SC: Biogeosciences [B]
MN: 2007 Fall Meeting