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Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments

Ice loss in the Southern Hemisphere has been greatest over the past 30 years in West Antarctica. The high sensitivity of this region to climate change has motivated geologists to examine marine sedimentary records for evidence of past episodes of West Antarctic Ice Sheet (WAIS) instability. Sediment...

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Autores principales: Bailey, Ian, Hemming, Sidney, Reilly, Brendan T., Rollinson, Gavyn, Williams, Trevor, Weber, Michael E., Raymo, Maureen E., Peck, Victoria L., Ronge, Thomas A., Brachfeld, Stefanie, O'Connell, Suzanne, Tauxe, Lisa, Warnock, Jonathan P., Armbrecht, Linda, Cardillo, Fabricio G., Du, Zhiheng, Fauth, Gerson, Garcia, Marga, Glueder, Anna, Guitard, Michelle, Gutjahr, Marcus, Hernández‐Almeida, Iván, Hoem, Frida S., Hwang, Ji‐Hwan, Iizuka, Mutsumi, Kato, Yuji, Kenlee, Bridget, Martos, Yasmina M., Pérez, Lara F., Seki, Osamu, Tripathi, Shubham, Zheng, Xufeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9544630/
https://www.ncbi.nlm.nih.gov/pubmed/36247355
http://dx.doi.org/10.1029/2022PA004433
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author Bailey, Ian
Hemming, Sidney
Reilly, Brendan T.
Rollinson, Gavyn
Williams, Trevor
Weber, Michael E.
Raymo, Maureen E.
Peck, Victoria L.
Ronge, Thomas A.
Brachfeld, Stefanie
O'Connell, Suzanne
Tauxe, Lisa
Warnock, Jonathan P.
Armbrecht, Linda
Cardillo, Fabricio G.
Du, Zhiheng
Fauth, Gerson
Garcia, Marga
Glueder, Anna
Guitard, Michelle
Gutjahr, Marcus
Hernández‐Almeida, Iván
Hoem, Frida S.
Hwang, Ji‐Hwan
Iizuka, Mutsumi
Kato, Yuji
Kenlee, Bridget
Martos, Yasmina M.
Pérez, Lara F.
Seki, Osamu
Tripathi, Shubham
Zheng, Xufeng
author_facet Bailey, Ian
Hemming, Sidney
Reilly, Brendan T.
Rollinson, Gavyn
Williams, Trevor
Weber, Michael E.
Raymo, Maureen E.
Peck, Victoria L.
Ronge, Thomas A.
Brachfeld, Stefanie
O'Connell, Suzanne
Tauxe, Lisa
Warnock, Jonathan P.
Armbrecht, Linda
Cardillo, Fabricio G.
Du, Zhiheng
Fauth, Gerson
Garcia, Marga
Glueder, Anna
Guitard, Michelle
Gutjahr, Marcus
Hernández‐Almeida, Iván
Hoem, Frida S.
Hwang, Ji‐Hwan
Iizuka, Mutsumi
Kato, Yuji
Kenlee, Bridget
Martos, Yasmina M.
Pérez, Lara F.
Seki, Osamu
Tripathi, Shubham
Zheng, Xufeng
author_sort Bailey, Ian
collection PubMed
description Ice loss in the Southern Hemisphere has been greatest over the past 30 years in West Antarctica. The high sensitivity of this region to climate change has motivated geologists to examine marine sedimentary records for evidence of past episodes of West Antarctic Ice Sheet (WAIS) instability. Sediments accumulating in the Scotia Sea are useful to examine for this purpose because they receive iceberg‐rafted debris (IBRD) sourced from the Pacific‐ and Atlantic‐facing sectors of West Antarctica. Here we report on the sedimentology and provenance of the oldest of three cm‐scale coarse‐grained layers recovered from this sea at International Ocean Discovery Program Site U1538. These layers are preserved in opal‐rich sediments deposited ∼1.2 Ma during a relatively warm regional climate. Our microCT‐based analysis of the layer's in‐situ fabric confirms its ice‐rafted origin. We further infer that it is the product of an intense but short‐lived episode of IBRD deposition. Based on the petrography of its sand fraction and the Phanerozoic (40)Ar/(39)Ar ages of hornblende and mica it contains, we conclude that the IBRD it contains was likely sourced from the Weddell Sea and/or Amundsen Sea embayment(s) of West Antarctica. We attribute the high concentrations of IBRD in these layers to “dirty” icebergs calved from the WAIS following its retreat inland from its modern grounding line. These layers also sit at the top of a ∼366‐m thick Pliocene and early Pleistocene sequence that is much more dropstone‐rich than its overlying sediments. We speculate this fact may reflect that WAIS mass‐balance was highly dynamic during the ∼41‐kyr (inter)glacial world.
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spelling pubmed-95446302022-10-14 Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments Bailey, Ian Hemming, Sidney Reilly, Brendan T. Rollinson, Gavyn Williams, Trevor Weber, Michael E. Raymo, Maureen E. Peck, Victoria L. Ronge, Thomas A. Brachfeld, Stefanie O'Connell, Suzanne Tauxe, Lisa Warnock, Jonathan P. Armbrecht, Linda Cardillo, Fabricio G. Du, Zhiheng Fauth, Gerson Garcia, Marga Glueder, Anna Guitard, Michelle Gutjahr, Marcus Hernández‐Almeida, Iván Hoem, Frida S. Hwang, Ji‐Hwan Iizuka, Mutsumi Kato, Yuji Kenlee, Bridget Martos, Yasmina M. Pérez, Lara F. Seki, Osamu Tripathi, Shubham Zheng, Xufeng Paleoceanogr Paleoclimatol Research Article Ice loss in the Southern Hemisphere has been greatest over the past 30 years in West Antarctica. The high sensitivity of this region to climate change has motivated geologists to examine marine sedimentary records for evidence of past episodes of West Antarctic Ice Sheet (WAIS) instability. Sediments accumulating in the Scotia Sea are useful to examine for this purpose because they receive iceberg‐rafted debris (IBRD) sourced from the Pacific‐ and Atlantic‐facing sectors of West Antarctica. Here we report on the sedimentology and provenance of the oldest of three cm‐scale coarse‐grained layers recovered from this sea at International Ocean Discovery Program Site U1538. These layers are preserved in opal‐rich sediments deposited ∼1.2 Ma during a relatively warm regional climate. Our microCT‐based analysis of the layer's in‐situ fabric confirms its ice‐rafted origin. We further infer that it is the product of an intense but short‐lived episode of IBRD deposition. Based on the petrography of its sand fraction and the Phanerozoic (40)Ar/(39)Ar ages of hornblende and mica it contains, we conclude that the IBRD it contains was likely sourced from the Weddell Sea and/or Amundsen Sea embayment(s) of West Antarctica. We attribute the high concentrations of IBRD in these layers to “dirty” icebergs calved from the WAIS following its retreat inland from its modern grounding line. These layers also sit at the top of a ∼366‐m thick Pliocene and early Pleistocene sequence that is much more dropstone‐rich than its overlying sediments. We speculate this fact may reflect that WAIS mass‐balance was highly dynamic during the ∼41‐kyr (inter)glacial world. John Wiley and Sons Inc. 2022-07-12 2022-07 /pmc/articles/PMC9544630/ /pubmed/36247355 http://dx.doi.org/10.1029/2022PA004433 Text en © 2022. The Authors. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bailey, Ian
Hemming, Sidney
Reilly, Brendan T.
Rollinson, Gavyn
Williams, Trevor
Weber, Michael E.
Raymo, Maureen E.
Peck, Victoria L.
Ronge, Thomas A.
Brachfeld, Stefanie
O'Connell, Suzanne
Tauxe, Lisa
Warnock, Jonathan P.
Armbrecht, Linda
Cardillo, Fabricio G.
Du, Zhiheng
Fauth, Gerson
Garcia, Marga
Glueder, Anna
Guitard, Michelle
Gutjahr, Marcus
Hernández‐Almeida, Iván
Hoem, Frida S.
Hwang, Ji‐Hwan
Iizuka, Mutsumi
Kato, Yuji
Kenlee, Bridget
Martos, Yasmina M.
Pérez, Lara F.
Seki, Osamu
Tripathi, Shubham
Zheng, Xufeng
Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments
title Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments
title_full Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments
title_fullStr Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments
title_full_unstemmed Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments
title_short Episodes of Early Pleistocene West Antarctic Ice Sheet Retreat Recorded by Iceberg Alley Sediments
title_sort episodes of early pleistocene west antarctic ice sheet retreat recorded by iceberg alley sediments
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9544630/
https://www.ncbi.nlm.nih.gov/pubmed/36247355
http://dx.doi.org/10.1029/2022PA004433
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