Foraminiferal raw counts, sedimentation rates, total foraminiferal absolute and relative abundance, dominant species percentages, foraminiferal microhabitats, ecological groups, oxygen index, TOC, stable isotope data, C37 alkenones and UP10 data

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Hauptverfasser: Pérez-Asensio, José N, Frigola, Jaime, Pena, Leopoldo D, Sierro, Francisco Javier, Reguera, Maria Isabel, Rodríguez-Tovar, Francisco Javier, Dorador, Javier, Asioli, Alessandra, Kuhlmann, Jannis, Huhn, Katrin, Cacho, Isabel
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Sprache:en
Veröffentlicht: PANGAEA 2020
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author Pérez-Asensio, José N
Frigola, Jaime
Pena, Leopoldo D
Sierro, Francisco Javier
Reguera, Maria Isabel
Rodríguez-Tovar, Francisco Javier
Dorador, Javier
Asioli, Alessandra
Kuhlmann, Jannis
Huhn, Katrin
Cacho, Isabel
author_facet Pérez-Asensio, José N
Frigola, Jaime
Pena, Leopoldo D
Sierro, Francisco Javier
Reguera, Maria Isabel
Rodríguez-Tovar, Francisco Javier
Dorador, Javier
Asioli, Alessandra
Kuhlmann, Jannis
Huhn, Katrin
Cacho, Isabel
collection Datos científicos de ciencias marinas y ambientales
contents The accumulation of an Organic Rich Layer (ORL) during the last deglaciation in the Alboran Sea (western Mediterranean Sea) and its link to changes in deep and intermediate water circulation are here investigated. Benthic foraminiferal assemblages and the shallow infaunal foraminifer Uvigerina peregrina δ13C record support the establishment of sustained high organic matter fluxes, and thus eutrophic conditions at the sea floor, during the late phase of the ORL (Younger Dryas to early Holocene periods). Since organic matter fluxes were lower (mesotrophic conditions) during the Bølling-Allerød period, they cannot be solely responsible for the ORL initiation. Geochemical, sedimentological and micropalaeontological proxies support a major weakening of the deep-water convection in the Gulf of Lion as the main driver for the development of poorly-ventilated conditions from intermediate depths (946 m) to the deep western Mediterranean basin that promoted the beginning of the ORL deposition. Nevertheless, a better ventilation at intermediate depths was established during the late ORL, while the deep basin remained poorly ventilated. We propose that our data reflect the arrival of a new better-ventilated intermediate water mass analogue to the current Levantine Intermediate Water (LIW) and/or a new intermediate water mass from the Gulf of Lion. The ultimate source of this water mass needs to be further explored but chronologies of the changes recorded here indicate that intermediate and deep ventilation phases were decoupled between the western and eastern Mediterranean basins during the deglaciation and early-middle Holocene.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_910732
institution PANGAEA
language en
publishDate 2020
publisher PANGAEA
record_format pangaea
spellingShingle Foraminiferal raw counts, sedimentation rates, total foraminiferal absolute and relative abundance, dominant species percentages, foraminiferal microhabitats, ecological groups, oxygen index, TOC, stable isotope data, C37 alkenones and UP10 data
Pérez-Asensio, José N
Frigola, Jaime
Pena, Leopoldo D
Sierro, Francisco Javier
Reguera, Maria Isabel
Rodríguez-Tovar, Francisco Javier
Dorador, Javier
Asioli, Alessandra
Kuhlmann, Jannis
Huhn, Katrin
Cacho, Isabel
Benthic foraminifera; Grain size data; Stable isotopes; TOC
The accumulation of an Organic Rich Layer (ORL) during the last deglaciation in the Alboran Sea (western Mediterranean Sea) and its link to changes in deep and intermediate water circulation are here investigated. Benthic foraminiferal assemblages and the shallow infaunal foraminifer Uvigerina peregrina δ13C record support the establishment of sustained high organic matter fluxes, and thus eutrophic conditions at the sea floor, during the late phase of the ORL (Younger Dryas to early Holocene periods). Since organic matter fluxes were lower (mesotrophic conditions) during the Bølling-Allerød period, they cannot be solely responsible for the ORL initiation. Geochemical, sedimentological and micropalaeontological proxies support a major weakening of the deep-water convection in the Gulf of Lion as the main driver for the development of poorly-ventilated conditions from intermediate depths (946 m) to the deep western Mediterranean basin that promoted the beginning of the ORL deposition. Nevertheless, a better ventilation at intermediate depths was established during the late ORL, while the deep basin remained poorly ventilated. We propose that our data reflect the arrival of a new better-ventilated intermediate water mass analogue to the current Levantine Intermediate Water (LIW) and/or a new intermediate water mass from the Gulf of Lion. The ultimate source of this water mass needs to be further explored but chronologies of the changes recorded here indicate that intermediate and deep ventilation phases were decoupled between the western and eastern Mediterranean basins during the deglaciation and early-middle Holocene.
title Foraminiferal raw counts, sedimentation rates, total foraminiferal absolute and relative abundance, dominant species percentages, foraminiferal microhabitats, ecological groups, oxygen index, TOC, stable isotope data, C37 alkenones and UP10 data
topic Benthic foraminifera; Grain size data; Stable isotopes; TOC
url https://doi.org/10.1594/PANGAEA.910732