Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica

Continuous sea salt and mineral dust aerosol records have been studied on the two EPICA (European Project for Ice Coring in Antarctica) deep ice cores. The joint use of these records from opposite sides of the East Antarctic plateau allows for an estimate of changes in dust transport and emission in...

Full description

Bibliographic Details
Published in:Earth and Planetary Science Letters
Main Authors: Fischer, Hubertus, Fundel, Felix, Ruth, Urs, Twarloh, Birthe, Wegner, Anna, Udisti, Roberto, Becagli, Silvia, Castellano, Emiliano, Morganti, Andrea, Severi, Mirko, Wolff, Eric, Littot, Genevieve, Röthlisberger, Regine, Mulvaney, Rob, Hutterli, Manuel A., Kaufmann, Patrik, Federer, Urs, Lambert, Fabrice, Bigler, Matthias, Hansson, Margareta, Jonsell, Ulf, de Angelis, Martine, Boutron, Claude, Siggaard-Andersen, Marie-Louise, Steffensen, Jorgen Peder, Barbante, Carlo, Gaspari, Vania, Gabrielli, Paolo, Wagenbach, Dietmar
Format: Article in Journal/Newspaper
Language:English
Published: Elsevier 2007
Subjects:
Online Access:https://boris.unibe.ch/25251/1/1-s2.0-S0012821X07003718-main.pdf
https://boris.unibe.ch/25251/
id ftunivbern:oai:boris.unibe.ch:25251
record_format openpolar
institution Open Polar
collection BORIS (Bern Open Repository and Information System, University of Bern)
op_collection_id ftunivbern
language English
topic 530 Physics
spellingShingle 530 Physics
Fischer, Hubertus
Fundel, Felix
Ruth, Urs
Twarloh, Birthe
Wegner, Anna
Udisti, Roberto
Becagli, Silvia
Castellano, Emiliano
Morganti, Andrea
Severi, Mirko
Wolff, Eric
Littot, Genevieve
Röthlisberger, Regine
Mulvaney, Rob
Hutterli, Manuel A.
Kaufmann, Patrik
Federer, Urs
Lambert, Fabrice
Bigler, Matthias
Hansson, Margareta
Jonsell, Ulf
de Angelis, Martine
Boutron, Claude
Siggaard-Andersen, Marie-Louise
Steffensen, Jorgen Peder
Barbante, Carlo
Gaspari, Vania
Gabrielli, Paolo
Wagenbach, Dietmar
Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica
topic_facet 530 Physics
description Continuous sea salt and mineral dust aerosol records have been studied on the two EPICA (European Project for Ice Coring in Antarctica) deep ice cores. The joint use of these records from opposite sides of the East Antarctic plateau allows for an estimate of changes in dust transport and emission intensity as well as for the identification of regional differences in the sea salt aerosol source. The mineral dust flux records at both sites show a strong coherency over the last 150 kyr related to dust emission changes in the glacial Patagonian dust source with three times higher dust fluxes in the Atlantic compared to the Indian Ocean sector of the Southern Ocean (SO). Using a simple conceptual transport model this indicates that transport can explain only 40% of the atmospheric dust concentration changes in Antarctica, while factor 5–10 changes occurred. Accordingly, the main cause for the strong glacial dust flux changes in Antarctica must lie in environmental changes in Patagonia. Dust emissions, hence environmental conditions in Patagonia, were very similar during the last two glacials and interglacials, respectively, despite 2–4 °C warmer temperatures recorded in Antarctica during the penultimate interglacial than today. 2–3 times higher sea salt fluxes found in both ice cores in the glacial compared to the Holocene are difficult to reconcile with a largely unchanged transport intensity and the distant open ocean source. The substantial glacial enhancements in sea salt aerosol fluxes can be readily explained assuming sea ice formation as the main sea salt aerosol source with a significantly larger expansion of (summer) sea ice in the Weddell Sea than in the Indian Ocean sector. During the penultimate interglacial, our sea salt records point to a 50% reduction of winter sea ice coverage compared to the Holocene both in the Indian and Atlantic Ocean sector of the SO. However, from 20 to 80 ka before present sea salt fluxes show only very subdued millennial changes despite pronounced temperature fluctuations, ...
format Article in Journal/Newspaper
author Fischer, Hubertus
Fundel, Felix
Ruth, Urs
Twarloh, Birthe
Wegner, Anna
Udisti, Roberto
Becagli, Silvia
Castellano, Emiliano
Morganti, Andrea
Severi, Mirko
Wolff, Eric
Littot, Genevieve
Röthlisberger, Regine
Mulvaney, Rob
Hutterli, Manuel A.
Kaufmann, Patrik
Federer, Urs
Lambert, Fabrice
Bigler, Matthias
Hansson, Margareta
Jonsell, Ulf
de Angelis, Martine
Boutron, Claude
Siggaard-Andersen, Marie-Louise
Steffensen, Jorgen Peder
Barbante, Carlo
Gaspari, Vania
Gabrielli, Paolo
Wagenbach, Dietmar
author_facet Fischer, Hubertus
Fundel, Felix
Ruth, Urs
Twarloh, Birthe
Wegner, Anna
Udisti, Roberto
Becagli, Silvia
Castellano, Emiliano
Morganti, Andrea
Severi, Mirko
Wolff, Eric
Littot, Genevieve
Röthlisberger, Regine
Mulvaney, Rob
Hutterli, Manuel A.
Kaufmann, Patrik
Federer, Urs
Lambert, Fabrice
Bigler, Matthias
Hansson, Margareta
Jonsell, Ulf
de Angelis, Martine
Boutron, Claude
Siggaard-Andersen, Marie-Louise
Steffensen, Jorgen Peder
Barbante, Carlo
Gaspari, Vania
Gabrielli, Paolo
Wagenbach, Dietmar
author_sort Fischer, Hubertus
title Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica
title_short Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica
title_full Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica
title_fullStr Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica
title_full_unstemmed Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica
title_sort reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep epica ice cores from the atlantic and indian ocean sector of antarctica
publisher Elsevier
publishDate 2007
url https://boris.unibe.ch/25251/1/1-s2.0-S0012821X07003718-main.pdf
https://boris.unibe.ch/25251/
geographic Antarctic
Indian
Patagonia
Southern Ocean
Weddell
Weddell Sea
geographic_facet Antarctic
Indian
Patagonia
Southern Ocean
Weddell
Weddell Sea
genre Antarc*
Antarctic
Antarctica
EPICA
Sea ice
Southern Ocean
Weddell Sea
genre_facet Antarc*
Antarctic
Antarctica
EPICA
Sea ice
Southern Ocean
Weddell Sea
op_source Fischer, Hubertus; Fundel, Felix; Ruth, Urs; Twarloh, Birthe; Wegner, Anna; Udisti, Roberto; Becagli, Silvia; Castellano, Emiliano; Morganti, Andrea; Severi, Mirko; Wolff, Eric; Littot, Genevieve; Röthlisberger, Regine; Mulvaney, Rob; Hutterli, Manuel A.; Kaufmann, Patrik; Federer, Urs; Lambert, Fabrice; Bigler, Matthias; Hansson, Margareta; . (2007). Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica. Earth and planetary science letters, 260(1-2), pp. 340-354. Amsterdam: Elsevier 10.1016/j.epsl.2007.06.014 <http://dx.doi.org/10.1016/j.epsl.2007.06.014>
op_relation https://boris.unibe.ch/25251/
op_rights info:eu-repo/semantics/restrictedAccess
op_doi https://doi.org/10.1016/j.epsl.2007.06.014
container_title Earth and Planetary Science Letters
container_volume 260
container_issue 1-2
container_start_page 340
op_container_end_page 354
_version_ 1774712362453958656
spelling ftunivbern:oai:boris.unibe.ch:25251 2023-08-20T04:01:58+02:00 Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica Fischer, Hubertus Fundel, Felix Ruth, Urs Twarloh, Birthe Wegner, Anna Udisti, Roberto Becagli, Silvia Castellano, Emiliano Morganti, Andrea Severi, Mirko Wolff, Eric Littot, Genevieve Röthlisberger, Regine Mulvaney, Rob Hutterli, Manuel A. Kaufmann, Patrik Federer, Urs Lambert, Fabrice Bigler, Matthias Hansson, Margareta Jonsell, Ulf de Angelis, Martine Boutron, Claude Siggaard-Andersen, Marie-Louise Steffensen, Jorgen Peder Barbante, Carlo Gaspari, Vania Gabrielli, Paolo Wagenbach, Dietmar 2007 application/pdf https://boris.unibe.ch/25251/1/1-s2.0-S0012821X07003718-main.pdf https://boris.unibe.ch/25251/ eng eng Elsevier https://boris.unibe.ch/25251/ info:eu-repo/semantics/restrictedAccess Fischer, Hubertus; Fundel, Felix; Ruth, Urs; Twarloh, Birthe; Wegner, Anna; Udisti, Roberto; Becagli, Silvia; Castellano, Emiliano; Morganti, Andrea; Severi, Mirko; Wolff, Eric; Littot, Genevieve; Röthlisberger, Regine; Mulvaney, Rob; Hutterli, Manuel A.; Kaufmann, Patrik; Federer, Urs; Lambert, Fabrice; Bigler, Matthias; Hansson, Margareta; . (2007). Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica. Earth and planetary science letters, 260(1-2), pp. 340-354. Amsterdam: Elsevier 10.1016/j.epsl.2007.06.014 <http://dx.doi.org/10.1016/j.epsl.2007.06.014> 530 Physics info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion PeerReviewed 2007 ftunivbern https://doi.org/10.1016/j.epsl.2007.06.014 2023-07-31T20:48:45Z Continuous sea salt and mineral dust aerosol records have been studied on the two EPICA (European Project for Ice Coring in Antarctica) deep ice cores. The joint use of these records from opposite sides of the East Antarctic plateau allows for an estimate of changes in dust transport and emission intensity as well as for the identification of regional differences in the sea salt aerosol source. The mineral dust flux records at both sites show a strong coherency over the last 150 kyr related to dust emission changes in the glacial Patagonian dust source with three times higher dust fluxes in the Atlantic compared to the Indian Ocean sector of the Southern Ocean (SO). Using a simple conceptual transport model this indicates that transport can explain only 40% of the atmospheric dust concentration changes in Antarctica, while factor 5–10 changes occurred. Accordingly, the main cause for the strong glacial dust flux changes in Antarctica must lie in environmental changes in Patagonia. Dust emissions, hence environmental conditions in Patagonia, were very similar during the last two glacials and interglacials, respectively, despite 2–4 °C warmer temperatures recorded in Antarctica during the penultimate interglacial than today. 2–3 times higher sea salt fluxes found in both ice cores in the glacial compared to the Holocene are difficult to reconcile with a largely unchanged transport intensity and the distant open ocean source. The substantial glacial enhancements in sea salt aerosol fluxes can be readily explained assuming sea ice formation as the main sea salt aerosol source with a significantly larger expansion of (summer) sea ice in the Weddell Sea than in the Indian Ocean sector. During the penultimate interglacial, our sea salt records point to a 50% reduction of winter sea ice coverage compared to the Holocene both in the Indian and Atlantic Ocean sector of the SO. However, from 20 to 80 ka before present sea salt fluxes show only very subdued millennial changes despite pronounced temperature fluctuations, ... Article in Journal/Newspaper Antarc* Antarctic Antarctica EPICA Sea ice Southern Ocean Weddell Sea BORIS (Bern Open Repository and Information System, University of Bern) Antarctic Indian Patagonia Southern Ocean Weddell Weddell Sea Earth and Planetary Science Letters 260 1-2 340 354