Organic matter preservation in sediments of the Peru and Oman continental margin

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Hauptverfasser: Lückge, Andreas, Boussafir, Mohammed, Lallier-Verges, Elisabeth, Littke, Ralf
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 1996
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author Lückge, Andreas
Boussafir, Mohammed
Lallier-Verges, Elisabeth
Littke, Ralf
author_facet Lückge, Andreas
Boussafir, Mohammed
Lallier-Verges, Elisabeth
Littke, Ralf
collection Datos científicos de ciencias marinas y ambientales
contents Detailed petrographical and bulk geochemical investigations of organic matter (OM) have been performed on sediments deposited below or close to upwelling areas offshore Peru (ODP-Leg 112; Sites 679, 681, 688) and Oman (ODP-Leg 117; Sites 720, 723, 724) in order to obtain a quantitative understanding of its accumulation and degradation. Microscopical as well as nanoscopical investigations reveal that the OM in sediments affected by upwelling mechanisms mainly (up to 98%) consists of unstructured (amorphous) organic aggregates without any apparent biological structures. In sediments which are not or to a lesser extent affected by upwelling (Site 720) terrestrial OM predominates. Organic carbon (TOC) contents are highly variable and range between 9.8% in sediments deposited below upwelling cells and 0.2% in sediments outside the upwelling zone. The TOC/sulphur ratios of the sediments scatter widely. The samples from the deep-water locations (Sites 688 and 720), show C/S-ratios of "normal" marine sediments, whereas at the other locations no correlation or even a negative correlation between sulphur and TOC concentration exists. In most of the upwelling-influenced sediments OM contains a significant amount of sulphur. The incorporation of sulphur into the OM followed microbial sulphate reduction and occurred in the upper meters of the sedimentary column. Below, OM is still present in vast amounts and relatively hydrogen-rich, but is nevertheless non-metabolizable and becomes the limiting factor for bacterial sulphate reduction. According to mass balance calculations 90-99% of the OM produced in the photic zone was remineralized and 1-3% was consumed by microbial sulphate reduction. The aerobic and anaerobic processes have greatly affected degradation and conservation of OM.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_757241
institution PANGAEA
language en
publishDate 1996
publisher PANGAEA
record_format pangaea
spellingShingle Organic matter preservation in sediments of the Peru and Oman continental margin
Lückge, Andreas
Boussafir, Mohammed
Lallier-Verges, Elisabeth
Littke, Ralf
112-679D; 112-681B; 112-688; 117-720A; 117-723; 117-724; Arabian Sea; COMPCORE; Composite Core; DRILL; Drilling/drill rig; Joides Resolution; Leg112; Leg117; Ocean Drilling Program; ODP; South Pacific Ocean
Detailed petrographical and bulk geochemical investigations of organic matter (OM) have been performed on sediments deposited below or close to upwelling areas offshore Peru (ODP-Leg 112; Sites 679, 681, 688) and Oman (ODP-Leg 117; Sites 720, 723, 724) in order to obtain a quantitative understanding of its accumulation and degradation. Microscopical as well as nanoscopical investigations reveal that the OM in sediments affected by upwelling mechanisms mainly (up to 98%) consists of unstructured (amorphous) organic aggregates without any apparent biological structures. In sediments which are not or to a lesser extent affected by upwelling (Site 720) terrestrial OM predominates. Organic carbon (TOC) contents are highly variable and range between 9.8% in sediments deposited below upwelling cells and 0.2% in sediments outside the upwelling zone. The TOC/sulphur ratios of the sediments scatter widely. The samples from the deep-water locations (Sites 688 and 720), show C/S-ratios of "normal" marine sediments, whereas at the other locations no correlation or even a negative correlation between sulphur and TOC concentration exists. In most of the upwelling-influenced sediments OM contains a significant amount of sulphur. The incorporation of sulphur into the OM followed microbial sulphate reduction and occurred in the upper meters of the sedimentary column. Below, OM is still present in vast amounts and relatively hydrogen-rich, but is nevertheless non-metabolizable and becomes the limiting factor for bacterial sulphate reduction. According to mass balance calculations 90-99% of the OM produced in the photic zone was remineralized and 1-3% was consumed by microbial sulphate reduction. The aerobic and anaerobic processes have greatly affected degradation and conservation of OM.
title Organic matter preservation in sediments of the Peru and Oman continental margin
topic 112-679D; 112-681B; 112-688; 117-720A; 117-723; 117-724; Arabian Sea; COMPCORE; Composite Core; DRILL; Drilling/drill rig; Joides Resolution; Leg112; Leg117; Ocean Drilling Program; ODP; South Pacific Ocean
url https://doi.org/10.1594/PANGAEA.757241