No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology

Volcanic fallout in polar ice sheets provides important opportunities to date and correlate ice-core records as well as to investigate the environmental impacts of eruptions. Only the geochemical characterization of volcanic ash (tephra) embedded in the ice strata can confirm the source of the erupt...

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Published in:Climate of the Past
Main Authors: Plunkett, Gill, Sigl, Michael, Schwaiger, Hans F., Tomlinson, Emma L., Toohey, Matthew, McConnell, Joseph R., Pilcher, Jonathan R., Hasegawa, Takeshi, Siebe, Claus
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2022
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Online Access:https://doi.org/10.5194/cp-18-45-2022
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spelling ftnonlinearchiv:oai:noa.gwlb.de:cop_mods_00059919 2024-09-15T18:08:59+00:00 No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology Plunkett, Gill Sigl, Michael Schwaiger, Hans F. Tomlinson, Emma L. Toohey, Matthew McConnell, Joseph R. Pilcher, Jonathan R. Hasegawa, Takeshi Siebe, Claus 2022-01 electronic https://doi.org/10.5194/cp-18-45-2022 https://noa.gwlb.de/receive/cop_mods_00059919 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00059568/cp-18-45-2022.pdf https://cp.copernicus.org/articles/18/45/2022/cp-18-45-2022.pdf eng eng Copernicus Publications Climate of the Past -- http://www.copernicus.org/EGU/cp/cp/published_papers.html -- http://www.bibliothek.uni-regensburg.de/ezeit/?2217985 -- 1814-9332 https://doi.org/10.5194/cp-18-45-2022 https://noa.gwlb.de/receive/cop_mods_00059919 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00059568/cp-18-45-2022.pdf https://cp.copernicus.org/articles/18/45/2022/cp-18-45-2022.pdf https://creativecommons.org/licenses/by/4.0/ uneingeschränkt info:eu-repo/semantics/openAccess article Verlagsveröffentlichung article Text doc-type:article 2022 ftnonlinearchiv https://doi.org/10.5194/cp-18-45-2022 2024-06-26T04:34:57Z Volcanic fallout in polar ice sheets provides important opportunities to date and correlate ice-core records as well as to investigate the environmental impacts of eruptions. Only the geochemical characterization of volcanic ash (tephra) embedded in the ice strata can confirm the source of the eruption, however, and is a requisite if historical eruption ages are to be used as valid chronological checks on annual ice layer counting. Here we report the investigation of ash particles in a Greenland ice core that are associated with a volcanic sulfuric acid layer previously attributed to the 79 CE eruption of Vesuvius. Major and trace element composition of the particles indicates that the tephra does not derive from Vesuvius but most likely originates from an unidentified eruption in the Aleutian arc. Using ash dispersal modeling, we find that only an eruption large enough to include stratospheric injection is likely to account for the sizable (24–85 µm) ash particles observed in the Greenland ice at this time. Despite its likely explosivity, this event does not appear to have triggered significant climate perturbations, unlike some other large extratropical eruptions. In light of a recent re-evaluation of the Greenland ice-core chronologies, our findings further challenge the previous assignation of this volcanic event to 79 CE. We highlight the need for the revised Common Era ice-core chronology to be formally accepted by the wider ice-core and climate modeling communities in order to ensure robust age linkages to precisely dated historical and paleoclimate proxy records. Article in Journal/Newspaper Greenland Greenland ice core ice core Niedersächsisches Online-Archiv NOA Climate of the Past 18 1 45 65
institution Open Polar
collection Niedersächsisches Online-Archiv NOA
op_collection_id ftnonlinearchiv
language English
topic article
Verlagsveröffentlichung
spellingShingle article
Verlagsveröffentlichung
Plunkett, Gill
Sigl, Michael
Schwaiger, Hans F.
Tomlinson, Emma L.
Toohey, Matthew
McConnell, Joseph R.
Pilcher, Jonathan R.
Hasegawa, Takeshi
Siebe, Claus
No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology
topic_facet article
Verlagsveröffentlichung
description Volcanic fallout in polar ice sheets provides important opportunities to date and correlate ice-core records as well as to investigate the environmental impacts of eruptions. Only the geochemical characterization of volcanic ash (tephra) embedded in the ice strata can confirm the source of the eruption, however, and is a requisite if historical eruption ages are to be used as valid chronological checks on annual ice layer counting. Here we report the investigation of ash particles in a Greenland ice core that are associated with a volcanic sulfuric acid layer previously attributed to the 79 CE eruption of Vesuvius. Major and trace element composition of the particles indicates that the tephra does not derive from Vesuvius but most likely originates from an unidentified eruption in the Aleutian arc. Using ash dispersal modeling, we find that only an eruption large enough to include stratospheric injection is likely to account for the sizable (24–85 µm) ash particles observed in the Greenland ice at this time. Despite its likely explosivity, this event does not appear to have triggered significant climate perturbations, unlike some other large extratropical eruptions. In light of a recent re-evaluation of the Greenland ice-core chronologies, our findings further challenge the previous assignation of this volcanic event to 79 CE. We highlight the need for the revised Common Era ice-core chronology to be formally accepted by the wider ice-core and climate modeling communities in order to ensure robust age linkages to precisely dated historical and paleoclimate proxy records.
format Article in Journal/Newspaper
author Plunkett, Gill
Sigl, Michael
Schwaiger, Hans F.
Tomlinson, Emma L.
Toohey, Matthew
McConnell, Joseph R.
Pilcher, Jonathan R.
Hasegawa, Takeshi
Siebe, Claus
author_facet Plunkett, Gill
Sigl, Michael
Schwaiger, Hans F.
Tomlinson, Emma L.
Toohey, Matthew
McConnell, Joseph R.
Pilcher, Jonathan R.
Hasegawa, Takeshi
Siebe, Claus
author_sort Plunkett, Gill
title No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology
title_short No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology
title_full No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology
title_fullStr No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology
title_full_unstemmed No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: implications for geochronology and paleoclimatology
title_sort no evidence for tephra in greenland from the historic eruption of vesuvius in 79 ce: implications for geochronology and paleoclimatology
publisher Copernicus Publications
publishDate 2022
url https://doi.org/10.5194/cp-18-45-2022
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https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00059568/cp-18-45-2022.pdf
https://cp.copernicus.org/articles/18/45/2022/cp-18-45-2022.pdf
genre Greenland
Greenland ice core
ice core
genre_facet Greenland
Greenland ice core
ice core
op_relation Climate of the Past -- http://www.copernicus.org/EGU/cp/cp/published_papers.html -- http://www.bibliothek.uni-regensburg.de/ezeit/?2217985 -- 1814-9332
https://doi.org/10.5194/cp-18-45-2022
https://noa.gwlb.de/receive/cop_mods_00059919
https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00059568/cp-18-45-2022.pdf
https://cp.copernicus.org/articles/18/45/2022/cp-18-45-2022.pdf
op_rights https://creativecommons.org/licenses/by/4.0/
uneingeschränkt
info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.5194/cp-18-45-2022
container_title Climate of the Past
container_volume 18
container_issue 1
container_start_page 45
op_container_end_page 65
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