(Table 1) Stable carbon isotope record and calculated recycled DIC for sediment core ANDRA_HTM102

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Autores principales: van Breugel, Yvonne, Baas, Marianne, Schouten, Stefan, Mattioli, Emanuela, Sinninghe Damsté, Jaap S
Formato: Dataset Open Access
Lenguaje:en
Publicado: PANGAEA 2006
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author van Breugel, Yvonne
Baas, Marianne
Schouten, Stefan
Mattioli, Emanuela
Sinninghe Damsté, Jaap S
author_facet van Breugel, Yvonne
Baas, Marianne
Schouten, Stefan
Mattioli, Emanuela
Sinninghe Damsté, Jaap S
collection Datos científicos de ciencias marinas y ambientales
contents The prominent negative stable carbon isotope excursion in both carbonate and organic carbon recorded in organic-rich sediments deposited during the Toarcian oceanic anoxic event (OAE) has commonly been explained by recycling of 13C-depleted CO2 (the so-called Küspert model). More recently, the massive release of 13C-depleted methane or other forms of 13C-depleted carbon was also proposed to account for the observed negative d13C excursions in organic carbon of terrigenous as well as of marine origin. The occurrence of diagenetic products of the carotenoid isorenieratene (isorenieratane and other aryl isoprenoids) in Toarcian black shales has been regarded as supporting evidence for the Küspert hypothesis as they point to strong stratification of the epicontinental seas. A section of a drill core straddling the Toarcian of the Paris Basin (Cirfontaine-en-Ornois) contained intact isorenieratane, providing evidence that photosynthetic green sulphur bacteria were present at the time of deposition, even prior to the OAE. However, the isorenieratane abundances are very low in the section where the negative d13C excursion in organic carbon and phytane, a chemical fossil derived from chlorophyll, occurs. The abundance of the isorenieratene derivatives increases, once the d13C records have shifted to more positive values. The d13C of isorenieratane (generally circa -13.1 ± 0.5 per mil) indicates that the respired CO2 contribution at the chemocline was low and is thus not likely to be the main cause of the prominent up to 7per mil negative d13C shift recorded in Toarcian organic carbon records.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_833689
institution PANGAEA
language en
publishDate 2006
publisher PANGAEA
record_format pangaea
spellingShingle (Table 1) Stable carbon isotope record and calculated recycled DIC for sediment core ANDRA_HTM102
van Breugel, Yvonne
Baas, Marianne
Schouten, Stefan
Mattioli, Emanuela
Sinninghe Damsté, Jaap S
-; ANDRA_HTM102; Calculated; DEPTH, sediment/rock; DRILL; Drilling/drill rig; France; Isorenieratane, δ13C; Isorenieratane, δ13C, standard deviation; Isotope ratio monitoring (IRM) mass spectrometry; Mass spectrometer Finnigan Delta Plus; δ13C, carbon dioxide, aquatic; δ13C, organic carbon
The prominent negative stable carbon isotope excursion in both carbonate and organic carbon recorded in organic-rich sediments deposited during the Toarcian oceanic anoxic event (OAE) has commonly been explained by recycling of 13C-depleted CO2 (the so-called Küspert model). More recently, the massive release of 13C-depleted methane or other forms of 13C-depleted carbon was also proposed to account for the observed negative d13C excursions in organic carbon of terrigenous as well as of marine origin. The occurrence of diagenetic products of the carotenoid isorenieratene (isorenieratane and other aryl isoprenoids) in Toarcian black shales has been regarded as supporting evidence for the Küspert hypothesis as they point to strong stratification of the epicontinental seas. A section of a drill core straddling the Toarcian of the Paris Basin (Cirfontaine-en-Ornois) contained intact isorenieratane, providing evidence that photosynthetic green sulphur bacteria were present at the time of deposition, even prior to the OAE. However, the isorenieratane abundances are very low in the section where the negative d13C excursion in organic carbon and phytane, a chemical fossil derived from chlorophyll, occurs. The abundance of the isorenieratene derivatives increases, once the d13C records have shifted to more positive values. The d13C of isorenieratane (generally circa -13.1 ± 0.5 per mil) indicates that the respired CO2 contribution at the chemocline was low and is thus not likely to be the main cause of the prominent up to 7per mil negative d13C shift recorded in Toarcian organic carbon records.
title (Table 1) Stable carbon isotope record and calculated recycled DIC for sediment core ANDRA_HTM102
topic -; ANDRA_HTM102; Calculated; DEPTH, sediment/rock; DRILL; Drilling/drill rig; France; Isorenieratane, δ13C; Isorenieratane, δ13C, standard deviation; Isotope ratio monitoring (IRM) mass spectrometry; Mass spectrometer Finnigan Delta Plus; δ13C, carbon dioxide, aquatic; δ13C, organic carbon
url https://doi.org/10.1594/PANGAEA.833689