Response of the East Antarctic Sheet to Past and Future Climate Change
The East Antarctic Ice Sheet contains the vast majority of Earth’s glacier ice (about 52 metres sea-level equivalent), but is often viewed as less vulnerable to global warming than the West Antarctic or Greenland ice sheets. However, some regions of the East Antarctic Ice Sheet have lost mass over r...
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Online Access: | http://dro.dur.ac.uk/36323/ http://dro.dur.ac.uk/36323/1/36323.pdf https://doi.org/10.1038/s41586-022-04946-0 |
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ftunivdurham:oai:dro.dur.ac.uk.OAI2:36323 2023-05-15T13:36:39+02:00 Response of the East Antarctic Sheet to Past and Future Climate Change Stokes, Chris R. Abram, Nerilie J. Bentley, Michael J. Edwards, Tamsin L. England, Matthew H. Foppert, Annie Jamieson, Stewart S.R. Jones, Richard S. King, Matt A. Lenaerts, Jan T.M. Medley, Brooke Miles, Bertie W.J. Paxman, Guy J.G. Ritz, Catherine van de Flierdt, Tina Whitehouse, Pippa 2022-08-10 application/pdf http://dro.dur.ac.uk/36323/ http://dro.dur.ac.uk/36323/1/36323.pdf https://doi.org/10.1038/s41586-022-04946-0 unknown Nature Publishing Group dro:36323 issn:0028-0836 issn: 1476-4687 doi:10.1038/s41586-022-04946-0 http://dro.dur.ac.uk/36323/ https://doi.org/10.1038/s41586-022-04946-0 http://dro.dur.ac.uk/36323/1/36323.pdf Nature, 2022, Vol.608, pp.275-286 [Peer Reviewed Journal] Article PeerReviewed 2022 ftunivdurham https://doi.org/10.1038/s41586-022-04946-0 2023-02-16T23:26:13Z The East Antarctic Ice Sheet contains the vast majority of Earth’s glacier ice (about 52 metres sea-level equivalent), but is often viewed as less vulnerable to global warming than the West Antarctic or Greenland ice sheets. However, some regions of the East Antarctic Ice Sheet have lost mass over recent decades, prompting the need to re-evaluate its sensitivity to climate change. Here we review the response of the East Antarctic Ice Sheet to past warm periods, synthesize current observations of change and evaluate future projections. Some marine-based catchments that underwent notable mass loss during past warm periods are losing mass at present but most projections indicate increased accumulation across the East Antarctic Ice Sheet over the twenty-first century, keeping the ice sheet broadly in balance. Beyond 2100, high-emissions scenarios generate increased ice discharge and potentially several metres of sea-level rise within just a few centuries, but substantial mass loss could be averted if the Paris Agreement to limit warming below 2 degrees Celsius is satisfied. Article in Journal/Newspaper Antarc* Antarctic glacier Greenland Ice Sheet Durham University: Durham Research Online Antarctic East Antarctic Ice Sheet Greenland Nature 608 7922 275 286 |
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Durham University: Durham Research Online |
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ftunivdurham |
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description |
The East Antarctic Ice Sheet contains the vast majority of Earth’s glacier ice (about 52 metres sea-level equivalent), but is often viewed as less vulnerable to global warming than the West Antarctic or Greenland ice sheets. However, some regions of the East Antarctic Ice Sheet have lost mass over recent decades, prompting the need to re-evaluate its sensitivity to climate change. Here we review the response of the East Antarctic Ice Sheet to past warm periods, synthesize current observations of change and evaluate future projections. Some marine-based catchments that underwent notable mass loss during past warm periods are losing mass at present but most projections indicate increased accumulation across the East Antarctic Ice Sheet over the twenty-first century, keeping the ice sheet broadly in balance. Beyond 2100, high-emissions scenarios generate increased ice discharge and potentially several metres of sea-level rise within just a few centuries, but substantial mass loss could be averted if the Paris Agreement to limit warming below 2 degrees Celsius is satisfied. |
format |
Article in Journal/Newspaper |
author |
Stokes, Chris R. Abram, Nerilie J. Bentley, Michael J. Edwards, Tamsin L. England, Matthew H. Foppert, Annie Jamieson, Stewart S.R. Jones, Richard S. King, Matt A. Lenaerts, Jan T.M. Medley, Brooke Miles, Bertie W.J. Paxman, Guy J.G. Ritz, Catherine van de Flierdt, Tina Whitehouse, Pippa |
spellingShingle |
Stokes, Chris R. Abram, Nerilie J. Bentley, Michael J. Edwards, Tamsin L. England, Matthew H. Foppert, Annie Jamieson, Stewart S.R. Jones, Richard S. King, Matt A. Lenaerts, Jan T.M. Medley, Brooke Miles, Bertie W.J. Paxman, Guy J.G. Ritz, Catherine van de Flierdt, Tina Whitehouse, Pippa Response of the East Antarctic Sheet to Past and Future Climate Change |
author_facet |
Stokes, Chris R. Abram, Nerilie J. Bentley, Michael J. Edwards, Tamsin L. England, Matthew H. Foppert, Annie Jamieson, Stewart S.R. Jones, Richard S. King, Matt A. Lenaerts, Jan T.M. Medley, Brooke Miles, Bertie W.J. Paxman, Guy J.G. Ritz, Catherine van de Flierdt, Tina Whitehouse, Pippa |
author_sort |
Stokes, Chris R. |
title |
Response of the East Antarctic Sheet to Past and Future Climate Change |
title_short |
Response of the East Antarctic Sheet to Past and Future Climate Change |
title_full |
Response of the East Antarctic Sheet to Past and Future Climate Change |
title_fullStr |
Response of the East Antarctic Sheet to Past and Future Climate Change |
title_full_unstemmed |
Response of the East Antarctic Sheet to Past and Future Climate Change |
title_sort |
response of the east antarctic sheet to past and future climate change |
publisher |
Nature Publishing Group |
publishDate |
2022 |
url |
http://dro.dur.ac.uk/36323/ http://dro.dur.ac.uk/36323/1/36323.pdf https://doi.org/10.1038/s41586-022-04946-0 |
geographic |
Antarctic East Antarctic Ice Sheet Greenland |
geographic_facet |
Antarctic East Antarctic Ice Sheet Greenland |
genre |
Antarc* Antarctic glacier Greenland Ice Sheet |
genre_facet |
Antarc* Antarctic glacier Greenland Ice Sheet |
op_source |
Nature, 2022, Vol.608, pp.275-286 [Peer Reviewed Journal] |
op_relation |
dro:36323 issn:0028-0836 issn: 1476-4687 doi:10.1038/s41586-022-04946-0 http://dro.dur.ac.uk/36323/ https://doi.org/10.1038/s41586-022-04946-0 http://dro.dur.ac.uk/36323/1/36323.pdf |
op_doi |
https://doi.org/10.1038/s41586-022-04946-0 |
container_title |
Nature |
container_volume |
608 |
container_issue |
7922 |
container_start_page |
275 |
op_container_end_page |
286 |
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1766082089694789632 |