Source identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO25

The sedimentary presence of the diatom lipid diene II (hereafter IPSO25) has been proposed as a proxy for palaeo Antarctic sea ice. Here, the authors identify a source of IPSO25and hypothesize that its sedimentary distribution may provide proxy evidence of landfast ice influenced by freshwater disch...

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Autores principales: S. T. Belt, L. Smik, T. A. Brown, J.-H. Kim, S. J. Rowland, C. S. Allen, J.-K. Gal, K.-H. Shin, J. I. Lee, K. W. R. Taylor
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/9a72d7cb3b6341f58cab6edb8b26e756
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spelling oai:doaj.org-article:9a72d7cb3b6341f58cab6edb8b26e7562021-12-02T14:39:29ZSource identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO2510.1038/ncomms126552041-1723https://doaj.org/article/9a72d7cb3b6341f58cab6edb8b26e7562016-08-01T00:00:00Zhttps://doi.org/10.1038/ncomms12655https://doaj.org/toc/2041-1723The sedimentary presence of the diatom lipid diene II (hereafter IPSO25) has been proposed as a proxy for palaeo Antarctic sea ice. Here, the authors identify a source of IPSO25and hypothesize that its sedimentary distribution may provide proxy evidence of landfast ice influenced by freshwater discharge.S. T. BeltL. SmikT. A. BrownJ.-H. KimS. J. RowlandC. S. AllenJ.-K. GalK.-H. ShinJ. I. LeeK. W. R. TaylorNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
S. T. Belt
L. Smik
T. A. Brown
J.-H. Kim
S. J. Rowland
C. S. Allen
J.-K. Gal
K.-H. Shin
J. I. Lee
K. W. R. Taylor
Source identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO25
description The sedimentary presence of the diatom lipid diene II (hereafter IPSO25) has been proposed as a proxy for palaeo Antarctic sea ice. Here, the authors identify a source of IPSO25and hypothesize that its sedimentary distribution may provide proxy evidence of landfast ice influenced by freshwater discharge.
format article
author S. T. Belt
L. Smik
T. A. Brown
J.-H. Kim
S. J. Rowland
C. S. Allen
J.-K. Gal
K.-H. Shin
J. I. Lee
K. W. R. Taylor
author_facet S. T. Belt
L. Smik
T. A. Brown
J.-H. Kim
S. J. Rowland
C. S. Allen
J.-K. Gal
K.-H. Shin
J. I. Lee
K. W. R. Taylor
author_sort S. T. Belt
title Source identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO25
title_short Source identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO25
title_full Source identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO25
title_fullStr Source identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO25
title_full_unstemmed Source identification and distribution reveals the potential of the geochemical Antarctic sea ice proxy IPSO25
title_sort source identification and distribution reveals the potential of the geochemical antarctic sea ice proxy ipso25
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/9a72d7cb3b6341f58cab6edb8b26e756
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