West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster

Over 40 years ago, the glaciologist John Mercer warned that parts of the West Antarctic Ice Sheet were at risk of collapse due to the CO 2 greenhouse effect. Mercer recognised the unique vulnerability of ice sheets resting on beds far below sea level (marine-based ice sheets), where an initial warmi...

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Published in:Scottish Geographical Journal
Main Authors: Benn, Doug I, Sugden, David E.
Format: Article in Journal/Newspaper
Language:English
Published: 2021
Subjects:
Online Access:https://risweb.st-andrews.ac.uk/portal/en/researchoutput/west-antarctic-ice-sheet-and-co2-greenhouse-effect(74c5443d-bc1e-4adb-8270-61c639e8ff37).html
https://doi.org/10.1080/14702541.2020.1853870
https://research-repository.st-andrews.ac.uk/bitstream/10023/21690/1/Benn_2021_SGJ_WestAntarctic_CC.pdf
id ftunstandrewcris:oai:risweb.st-andrews.ac.uk:publications/74c5443d-bc1e-4adb-8270-61c639e8ff37
record_format openpolar
spelling ftunstandrewcris:oai:risweb.st-andrews.ac.uk:publications/74c5443d-bc1e-4adb-8270-61c639e8ff37 2023-05-15T13:53:11+02:00 West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster Benn, Doug I Sugden, David E. 2021-02-14 application/pdf https://risweb.st-andrews.ac.uk/portal/en/researchoutput/west-antarctic-ice-sheet-and-co2-greenhouse-effect(74c5443d-bc1e-4adb-8270-61c639e8ff37).html https://doi.org/10.1080/14702541.2020.1853870 https://research-repository.st-andrews.ac.uk/bitstream/10023/21690/1/Benn_2021_SGJ_WestAntarctic_CC.pdf eng eng info:eu-repo/semantics/openAccess Benn , D I & Sugden , D E 2021 , ' West Antarctic Ice Sheet and CO 2 greenhouse effect : a threat of disaster ' , Scottish Geographical Journal , vol. 136 , no. 1-4 , pp. 13-23 . https://doi.org/10.1080/14702541.2020.1853870 Ice sheet instability Antarctica Climate change article 2021 ftunstandrewcris https://doi.org/10.1080/14702541.2020.1853870 2021-12-26T14:37:35Z Over 40 years ago, the glaciologist John Mercer warned that parts of the West Antarctic Ice Sheet were at risk of collapse due to the CO 2 greenhouse effect. Mercer recognised the unique vulnerability of ice sheets resting on beds far below sea level (marine-based ice sheets), where an initial warming signal can initiate irreversible retreat. In this paper, we review recent work on evidence for ice sheet collapse in warmer periods of the recent geological past, the current behaviour of the ice sheet, and computer models used to predict future ice-sheet response to global warming. Much of this work points in the same direction: warming climates can indeed trigger collapse of marine-based portions of the West Antarctic Ice Sheet, and retreat in response to recent warming has brought parts of the ice sheet to the threshold of instability. Further retreat appears to be inevitable, but the rate of collapse depends critically on future emissions. Article in Journal/Newspaper Antarc* Antarctic Antarctica Ice Sheet University of St Andrews: Research Portal Antarctic Mercer ENVELOPE(65.647,65.647,-70.227,-70.227) West Antarctic Ice Sheet Scottish Geographical Journal 136 1-4 13 23
institution Open Polar
collection University of St Andrews: Research Portal
op_collection_id ftunstandrewcris
language English
topic Ice sheet instability
Antarctica
Climate change
spellingShingle Ice sheet instability
Antarctica
Climate change
Benn, Doug I
Sugden, David E.
West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster
topic_facet Ice sheet instability
Antarctica
Climate change
description Over 40 years ago, the glaciologist John Mercer warned that parts of the West Antarctic Ice Sheet were at risk of collapse due to the CO 2 greenhouse effect. Mercer recognised the unique vulnerability of ice sheets resting on beds far below sea level (marine-based ice sheets), where an initial warming signal can initiate irreversible retreat. In this paper, we review recent work on evidence for ice sheet collapse in warmer periods of the recent geological past, the current behaviour of the ice sheet, and computer models used to predict future ice-sheet response to global warming. Much of this work points in the same direction: warming climates can indeed trigger collapse of marine-based portions of the West Antarctic Ice Sheet, and retreat in response to recent warming has brought parts of the ice sheet to the threshold of instability. Further retreat appears to be inevitable, but the rate of collapse depends critically on future emissions.
format Article in Journal/Newspaper
author Benn, Doug I
Sugden, David E.
author_facet Benn, Doug I
Sugden, David E.
author_sort Benn, Doug I
title West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster
title_short West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster
title_full West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster
title_fullStr West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster
title_full_unstemmed West Antarctic Ice Sheet and CO 2 greenhouse effect:a threat of disaster
title_sort west antarctic ice sheet and co 2 greenhouse effect:a threat of disaster
publishDate 2021
url https://risweb.st-andrews.ac.uk/portal/en/researchoutput/west-antarctic-ice-sheet-and-co2-greenhouse-effect(74c5443d-bc1e-4adb-8270-61c639e8ff37).html
https://doi.org/10.1080/14702541.2020.1853870
https://research-repository.st-andrews.ac.uk/bitstream/10023/21690/1/Benn_2021_SGJ_WestAntarctic_CC.pdf
long_lat ENVELOPE(65.647,65.647,-70.227,-70.227)
geographic Antarctic
Mercer
West Antarctic Ice Sheet
geographic_facet Antarctic
Mercer
West Antarctic Ice Sheet
genre Antarc*
Antarctic
Antarctica
Ice Sheet
genre_facet Antarc*
Antarctic
Antarctica
Ice Sheet
op_source Benn , D I & Sugden , D E 2021 , ' West Antarctic Ice Sheet and CO 2 greenhouse effect : a threat of disaster ' , Scottish Geographical Journal , vol. 136 , no. 1-4 , pp. 13-23 . https://doi.org/10.1080/14702541.2020.1853870
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.1080/14702541.2020.1853870
container_title Scottish Geographical Journal
container_volume 136
container_issue 1-4
container_start_page 13
op_container_end_page 23
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