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-List Of Titles -An Ice-core proxy for northerly air mass incursions into West Antarctica

Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/183678

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Title
An Ice-core proxy for northerly air mass incursions into West Antarctica
Related
International journal of climatology, Vol. 32, No. 10, (2012), p.1455-1465
DOI
10.1002/joc.2371
Publisher
Wiley-Blackwell
Date
2012
Author/Creator
Dixon, Daniel A
Author/Creator
Mayewski, Paul A
Author/Creator
Goodwin, Ian D
Author/Creator
Marshall, Gareth J
Author/Creator
Freeman, Rhaelene
Author/Creator
Maasch, Kirk A
Author/Creator
Sneed, Sharon B
Description
A 200-year proxy for northerly air mass incursions (NAMI) into central and western West Antarctica is developed from the examination of 19 shallow (21-150 m deep) Antarctic ice-core non-sea-salt (nss) Ca²⁺ concentration records. The NAMI proxy reveals a significant rise in recent decades. This rise is unprecedented for at least the past 200 years and is coincident with anthropogenically driven changes in other large-scale Southern Hemisphere (SH) environmental phenomena such as greenhouse gas (GHG) induced warming, ozone depletion, and the associated intensification of the SH westerlies. The Hysplit trajectory model is used to examine air mass transport pathways into West Antarctica. Empirical orthogonal function analysis, in combination with trajectory results, suggests that atmospheric circulation is the dominant factor affecting nssCa²⁺ concentrations throughout central and western West Antarctica. Ozone recovery will likely weaken the spring-summer SH westerlies in the future. Consequently, Antarctica could lose one of its best defences against SH GHG warming.
Description
11 page(s)
Subject Keyword
Antarctic
Subject Keyword
Atmospheric circulation
Subject Keyword
Climate change
Subject Keyword
Glaciochemistry
Subject Keyword
International Trans Antarctic Scientific Expedition
Subject Keyword
Southern Hemisphere westerlies
Resource Type
journal article
Organisation
Macquarie University. CORE - Climate Risk

Identifier
http://hdl.handle.net/1959.14/183678
Identifier
ISSN:0899-8418
Identifier
mq_res-ext-2-s2.0-84864139932
Language
eng
Reviewed
Reviewed
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Citation Format
E-mail Address
Subject
"International journal of climatology"
 
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