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Partitioning of organic matter in continental margin sediments among density fractions
Authors:Stuart G Wakeham  Elizabeth A Canuel  Elizabeth J Lerberg  Patrice Mason  Troy P Sampere  Thomas S Bianchi
Institution:aSkidaway Institute of Oceanography, 10 Ocean Science Circle, Savannah, GA 31411, USA;bVirginia Institute of Marine Science, School of Marine Science, College of William and Mary, P.O. Box 1346, Gloucester Point, VA 23062, USA;cDepartment of Earth and Environmental Sciences, Tulane University, New Orleans, LA 70118, USA;dDepartment of Oceanography, Texas A&M University, College Station, TX 777843-3146, USA
Abstract:Hydrodynamic processes sort and redistribute organic matter (OM) and minerals on continental margins. Density fractionations were conducted on sediments from diverse margins (Mexico margin, Gulf of Mexico, Mississippi River delta, Eel River margin) to investigate the nature, provenance and age of OM among density fractions. Mass, elemental (C and N), lignin, and surface area distributions, as well as stable carbon and radiocarbon isotopic compositions were measured. The lowest density fractions (< 1.6 g cm− 3) contained the highest organic carbon (OC) (up to 45%) and lignin concentrations (up to 8 mg g− 1) due to abundant woody debris, whereas high density fractions (> 2.5 g cm− 3) were OC-poor (%OC < 0.5) mineral material. Most sediment mass was found in the mesodensity fractions (1.6 to 2.5 g cm− 3) that contained the highest proportion of OC (up to ~ 75%) for each sediment. Stable carbon isotope compositions (δ13C − 25.5‰ to − 22.9‰) show terrigenous OC as a significant component of density isolates from the river-dominated sediments (Gulf of Mexico, Mississippi River, and Eel margin), whereas the Mexico margin, least influenced by riverine input, was dominated by autochthonous marine OC (δ13C ~ − 21.5‰). Radiocarbon compositions of density fractions indicate significant pre-aged OC (Δ14C as low as − 900‰) in river-influenced sediments but not on the Mexico margin (Δ14C > − 200‰). Ratios of vanillic acid to vanillin (Ad/Al)v among lignin oxidation products increase with increasing particle density suggesting variable lignin sources or selective degradation of lignin among the different density fractions.
Keywords:River-dominated continental margins  Sediment density fractions  Carbon isotopes  Lignin  Hydrodynamic sorting
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