Diatom-bound nitrogen isotope and opal flux records over the Holocene period in Southern Ocean sediment cores MD12-3396, MD11-3353 and PS75/072-4

Fuente: PANGAEA
Saved in:
Bibliographic Details
Main Authors: Studer, Anja S, Sigman, Daniel M, Martínez-García, Alfredo, Thöle, Lena, Michel, Elisabeth, Jaccard, Samuel L, Lippold, Jörg, Mazaud, Alain, Wang, Xingchen, Robinson, Laura F, Adkins, Jess F, Haug, Gerald H
Format: Dataset Open Access
Language:en
Published: PANGAEA 2018
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1867170473163358208
author Studer, Anja S
Sigman, Daniel M
Martínez-García, Alfredo
Thöle, Lena
Michel, Elisabeth
Jaccard, Samuel L
Lippold, Jörg
Mazaud, Alain
Wang, Xingchen
Robinson, Laura F
Adkins, Jess F
Haug, Gerald H
author_facet Studer, Anja S
Sigman, Daniel M
Martínez-García, Alfredo
Thöle, Lena
Michel, Elisabeth
Jaccard, Samuel L
Lippold, Jörg
Mazaud, Alain
Wang, Xingchen
Robinson, Laura F
Adkins, Jess F
Haug, Gerald H
collection Datos científicos de ciencias marinas y ambientales
contents A rise in the atmospheric CO2 concentration of ~20 parts per million over the course of the Holocene has long been recognized as exceptional among interglacials and is in need of explanation. Previous hypotheses involved natural or anthropogenic changes in terrestrial biomass, carbonate compensation in response to deglacial outgassing of oceanic CO2, and enhanced shallow water carbonate deposition. Here, we compile new and previously published fossil-bound nitrogen isotope records from the Southern Ocean that indicate a rise in surface nitrate concentration through the Holocene. When coupled with increasing or constant export production, these data suggest an acceleration of nitrate supply to the Southern Ocean surface from underlying deep water. This change would have weakened the ocean's biological pump that stores CO2 in the ocean interior, possibly explaining the Holocene atmospheric CO2 rise. Over the Holocene, the circum-North Atlantic region cooled, and the formation of North Atlantic Deep Water appears to have slowed. Thus, the 'seesaw' in deep ocean ventilation between the North Atlantic and the Southern Ocean that has been invoked for millennial-scale events, deglaciations and the last interglacial period may have also operated, albeit in a more gradual form, over the Holocene.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_891436
institution PANGAEA
language en
publishDate 2018
publisher PANGAEA
record_format pangaea
spellingShingle Diatom-bound nitrogen isotope and opal flux records over the Holocene period in Southern Ocean sediment cores MD12-3396, MD11-3353 and PS75/072-4
Studer, Anja S
Sigman, Daniel M
Martínez-García, Alfredo
Thöle, Lena
Michel, Elisabeth
Jaccard, Samuel L
Lippold, Jörg
Mazaud, Alain
Wang, Xingchen
Robinson, Laura F
Adkins, Jess F
Haug, Gerald H

A rise in the atmospheric CO2 concentration of ~20 parts per million over the course of the Holocene has long been recognized as exceptional among interglacials and is in need of explanation. Previous hypotheses involved natural or anthropogenic changes in terrestrial biomass, carbonate compensation in response to deglacial outgassing of oceanic CO2, and enhanced shallow water carbonate deposition. Here, we compile new and previously published fossil-bound nitrogen isotope records from the Southern Ocean that indicate a rise in surface nitrate concentration through the Holocene. When coupled with increasing or constant export production, these data suggest an acceleration of nitrate supply to the Southern Ocean surface from underlying deep water. This change would have weakened the ocean's biological pump that stores CO2 in the ocean interior, possibly explaining the Holocene atmospheric CO2 rise. Over the Holocene, the circum-North Atlantic region cooled, and the formation of North Atlantic Deep Water appears to have slowed. Thus, the 'seesaw' in deep ocean ventilation between the North Atlantic and the Southern Ocean that has been invoked for millennial-scale events, deglaciations and the last interglacial period may have also operated, albeit in a more gradual form, over the Holocene.
title Diatom-bound nitrogen isotope and opal flux records over the Holocene period in Southern Ocean sediment cores MD12-3396, MD11-3353 and PS75/072-4
topic
url https://doi.org/10.1594/PANGAEA.891436