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  4. A 70 ka record of explosive eruptions from the TALDICE ice core (Talos Dome, East Antarctic plateau)
 
research article

A 70 ka record of explosive eruptions from the TALDICE ice core (Talos Dome, East Antarctic plateau)

Narcisi, Biancamaria
•
Petit, Jean Robert
•
Chappellaz, Jerome
August 25, 2010
Journal of Quaternary Science

The new Antarctic TALDICE ice core (72° 49' S, 159° 11' E, 1620 m depth), containing abundant primary tephras, provides the opportunity to elucidate the late Quaternary volcanic history of the south polar region, as well as to broaden the East Antarctic tephrostratigraphic framework. Here grain size and glass compositional data for representative tephra layers from the last 70 ka core section are used for source identification. Results point to origin of layers from centres of the Melbourne Volcanic Province (McMurdo Volcanic Group), located ~250 km from the coring site. Occurrence of tephra layers within the ice core record suggests that explosive activity in the identified source was not constant over the considered period, with a minimum of activity between 20 and 35 ka, and increased activity back to 65 ka. In addition to palaeovolcanic implications, the TALDICE tephra layers offer prospects for firm correlations between diverse widely separated palaeoarchives and for accurate dating of the Antarctic climatic record. Copyright © 2010 John Wiley & Sons, Ltd.

  • Details
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Type
research article
DOI
10.1002/jqs.1427
Web of Science ID

WOS:000281858800003

Author(s)
Narcisi, Biancamaria
Petit, Jean Robert
Chappellaz, Jerome
Date Issued

2010-08-25

Publisher

Wiley

Published in
Journal of Quaternary Science
Volume

25

Issue

6

Start page

844

End page

849

Subjects

explosive volcanism

•

geochemistry

•

ice core

•

polar region

•

proxy climate record

•

stratigraphy

•

tephra

•

tephrochronology

•

volcanic eruption

•

Antarctic Plateau

•

Antarctica

•

Australia

•

East Antarctica

•

Melbourne

•

Talos Dome

•

Victoria [Australia]

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
SENSE  
Available on Infoscience
November 23, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/192553
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