Age determination and glacier model for a small ice cap on Baffin Island

Records of Neoglacial glacier activity in the Arctic constructed from moraines are often incomplete due to a preservation bias toward the most extensive advance, usually the Little Ice Age. Recent warming in the Arctic has caused extensive retreat of glaciers over the past several decades, exposing...

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Main Authors: Pendleton, Simon, Miller, Gifford H, Anderson, Robert A, Crump, Sarah E, Zhong, Yafang, Jahn, Alexandra, Geirsdóttir, Áslaug
Format: Dataset
Language:English
Published: PANGAEA 2017
Subjects:
Online Access:https://doi.pangaea.de/10.1594/PANGAEA.881156
https://doi.org/10.1594/PANGAEA.881156
id ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.881156
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spelling ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.881156 2023-05-15T14:27:00+02:00 Age determination and glacier model for a small ice cap on Baffin Island Pendleton, Simon Miller, Gifford H Anderson, Robert A Crump, Sarah E Zhong, Yafang Jahn, Alexandra Geirsdóttir, Áslaug LATITUDE: 67.151820 * LONGITUDE: -64.825200 2017-10-28 application/zip, 754.2 kBytes https://doi.pangaea.de/10.1594/PANGAEA.881156 https://doi.org/10.1594/PANGAEA.881156 en eng PANGAEA https://doi.pangaea.de/10.1594/PANGAEA.881156 https://doi.org/10.1594/PANGAEA.881156 CC-BY-3.0: Creative Commons Attribution 3.0 Unported Access constraints: unrestricted info:eu-repo/semantics/openAccess CC-BY Supplement to: Pendleton, Simon; Miller, Gifford H; Anderson, Robert A; Crump, Sarah E; Zhong, Yafang; Jahn, Alexandra; Geirsdóttir, Áslaug (2017): Episodic Neoglacial expansion and rapid 20th Century retreat of a small ice cap on Baffin Island, Arctic Canada and modeled temperature change. Climate of the Past Discussions, 1-15, https://doi.org/10.5194/cp-2017-27 Baffin Island Divide_Ice_Cap ICEM Ice measurement Dataset 2017 ftpangaea https://doi.org/10.1594/PANGAEA.881156 https://doi.org/10.5194/cp-2017-27 2023-01-20T09:09:41Z Records of Neoglacial glacier activity in the Arctic constructed from moraines are often incomplete due to a preservation bias toward the most extensive advance, usually the Little Ice Age. Recent warming in the Arctic has caused extensive retreat of glaciers over the past several decades, exposing preserved landscapes complete with in situ tundra plants previously entombed by ice. The radiocarbon ages of these plants define the timing of snowline depression and glacier advance across the site, in response to local summer cooling. Although most dead plants recently exposed by ice retreat are rapidly removed from the landscape by erosion, where erosive processes are unusually weak, dead plants may remain preserved on the landscape for decades. In such settings, a transect of plant radiocarbon ages can be used to construct a near-continuous chronology of past ice margin advance. Here we present radiocarbon dates from the first such transect on Baffin Island, which directly dates the advance of a small ice cap over the past two millennia. The nature of ice expansion between 20 BCE and ~1000 CE is still uncertain, but episodic advances at ~1000, ~1200, and ~1500 CE led to the maximum Neoglacial dimensions ~1900 CE. We employ a two-dimensional numerical glacier model to reconstruct the pattern of ice expansion inferred from the radiocarbon ages and to explore the sensitivity of the ice cap to temperature change. Model experiments show that at least ~0.44 °C of cooling over the past 2 ka is required for the ice cap to reach its 1900 margin, and that the period from ~1000 to 1900 CE must have been at least 0.25 °C cooler than the previous millennium; results that agree with regional climate model simulations. However, ~3 °C of warming since 1900 CE is required to explain retreat to its present position, and, at the same rate of warming, the ice cap will disappear before 2100 CE. Dataset Arctic Arctic Baffin Island Baffin Tundra PANGAEA - Data Publisher for Earth & Environmental Science Arctic Baffin Island ENVELOPE(-64.825200,-64.825200,67.151820,67.151820)
institution Open Polar
collection PANGAEA - Data Publisher for Earth & Environmental Science
op_collection_id ftpangaea
language English
topic Baffin Island
Divide_Ice_Cap
ICEM
Ice measurement
spellingShingle Baffin Island
Divide_Ice_Cap
ICEM
Ice measurement
Pendleton, Simon
Miller, Gifford H
Anderson, Robert A
Crump, Sarah E
Zhong, Yafang
Jahn, Alexandra
Geirsdóttir, Áslaug
Age determination and glacier model for a small ice cap on Baffin Island
topic_facet Baffin Island
Divide_Ice_Cap
ICEM
Ice measurement
description Records of Neoglacial glacier activity in the Arctic constructed from moraines are often incomplete due to a preservation bias toward the most extensive advance, usually the Little Ice Age. Recent warming in the Arctic has caused extensive retreat of glaciers over the past several decades, exposing preserved landscapes complete with in situ tundra plants previously entombed by ice. The radiocarbon ages of these plants define the timing of snowline depression and glacier advance across the site, in response to local summer cooling. Although most dead plants recently exposed by ice retreat are rapidly removed from the landscape by erosion, where erosive processes are unusually weak, dead plants may remain preserved on the landscape for decades. In such settings, a transect of plant radiocarbon ages can be used to construct a near-continuous chronology of past ice margin advance. Here we present radiocarbon dates from the first such transect on Baffin Island, which directly dates the advance of a small ice cap over the past two millennia. The nature of ice expansion between 20 BCE and ~1000 CE is still uncertain, but episodic advances at ~1000, ~1200, and ~1500 CE led to the maximum Neoglacial dimensions ~1900 CE. We employ a two-dimensional numerical glacier model to reconstruct the pattern of ice expansion inferred from the radiocarbon ages and to explore the sensitivity of the ice cap to temperature change. Model experiments show that at least ~0.44 °C of cooling over the past 2 ka is required for the ice cap to reach its 1900 margin, and that the period from ~1000 to 1900 CE must have been at least 0.25 °C cooler than the previous millennium; results that agree with regional climate model simulations. However, ~3 °C of warming since 1900 CE is required to explain retreat to its present position, and, at the same rate of warming, the ice cap will disappear before 2100 CE.
format Dataset
author Pendleton, Simon
Miller, Gifford H
Anderson, Robert A
Crump, Sarah E
Zhong, Yafang
Jahn, Alexandra
Geirsdóttir, Áslaug
author_facet Pendleton, Simon
Miller, Gifford H
Anderson, Robert A
Crump, Sarah E
Zhong, Yafang
Jahn, Alexandra
Geirsdóttir, Áslaug
author_sort Pendleton, Simon
title Age determination and glacier model for a small ice cap on Baffin Island
title_short Age determination and glacier model for a small ice cap on Baffin Island
title_full Age determination and glacier model for a small ice cap on Baffin Island
title_fullStr Age determination and glacier model for a small ice cap on Baffin Island
title_full_unstemmed Age determination and glacier model for a small ice cap on Baffin Island
title_sort age determination and glacier model for a small ice cap on baffin island
publisher PANGAEA
publishDate 2017
url https://doi.pangaea.de/10.1594/PANGAEA.881156
https://doi.org/10.1594/PANGAEA.881156
op_coverage LATITUDE: 67.151820 * LONGITUDE: -64.825200
long_lat ENVELOPE(-64.825200,-64.825200,67.151820,67.151820)
geographic Arctic
Baffin Island
geographic_facet Arctic
Baffin Island
genre Arctic
Arctic
Baffin Island
Baffin
Tundra
genre_facet Arctic
Arctic
Baffin Island
Baffin
Tundra
op_source Supplement to: Pendleton, Simon; Miller, Gifford H; Anderson, Robert A; Crump, Sarah E; Zhong, Yafang; Jahn, Alexandra; Geirsdóttir, Áslaug (2017): Episodic Neoglacial expansion and rapid 20th Century retreat of a small ice cap on Baffin Island, Arctic Canada and modeled temperature change. Climate of the Past Discussions, 1-15, https://doi.org/10.5194/cp-2017-27
op_relation https://doi.pangaea.de/10.1594/PANGAEA.881156
https://doi.org/10.1594/PANGAEA.881156
op_rights CC-BY-3.0: Creative Commons Attribution 3.0 Unported
Access constraints: unrestricted
info:eu-repo/semantics/openAccess
op_rightsnorm CC-BY
op_doi https://doi.org/10.1594/PANGAEA.881156
https://doi.org/10.5194/cp-2017-27
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