Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments

Phd Thesis Assessing the impact of past phases of natural warming on climatically sensitive areas, such as Antarctic and sub-Antarctic regions, will help us better understand the impact that climate warming may have in the future. In recent decades, the Antarctic Peninsula has been one of the fastes...

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Main Author: Foster, Louise Claire
Format: Thesis
Language:English
Published: Newcastle University 2015
Subjects:
Online Access:http://hdl.handle.net/10443/2985
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spelling ftuninewcastleth:oai:theses.ncl.ac.uk:10443/2985 2023-05-15T13:32:03+02:00 Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments Foster, Louise Claire 2015 application/pdf http://hdl.handle.net/10443/2985 en eng Newcastle University http://hdl.handle.net/10443/2985 Thesis 2015 ftuninewcastleth 2022-01-07T13:02:53Z Phd Thesis Assessing the impact of past phases of natural warming on climatically sensitive areas, such as Antarctic and sub-Antarctic regions, will help us better understand the impact that climate warming may have in the future. In recent decades, the Antarctic Peninsula has been one of the fastest warming regions on Earth, warming at a rate of 3.4 °C per century, five times the global mean. Several phases of marked environmental change have occurred on the Antarctic Peninsula during the mid-late Holocene nonetheless, to date quantitative temperature reconstructions of terrestrial climates are not possible. GDGTs are one of few existing quantitative temperature proxies and recent developments of their use in lakes indicates their potential as a temperature proxy. Prior to application the relationship between GDGT-composition and several environmental factors, such as temperature, pH and conductivity, in Antarctic and sub-Antarctic lakes was assessed. Temperature explained a statistically significant independent control on the composition of branched GDGTs in the lakes and a new regional Antarctic and sub-Antarctic GDGT-temperature calibration was developed. Within this calibration, GDGT-IIIb was a statistically significant component indicating its importance in these environments. Applying the new GDGT-temperature calibration to sediment cores from Fan Lake, South Georgia and Yanou Lake, South Shetland Islands allowed the quantitative reconstruction of past temperatures during the Mid to Late-Holocene. The reconstructions showed varied temperatures throughout the records, evidencing the mid-Holocene warm period, and potentially the Medieval Climate Anomaly and Little Ice Age. Neither record, however, reconstructed the recent rapid warming seen in the glacial meltwater and instrumental records. A comparison of Fan Lake and Yanou Lake with other records from Antarctica and Chile showed periods of coherence between records alongside periods of inconsistency. This comparison also enabled potential changes in the PFZ to be considered, suggesting a more poleward position of the PFZ during warmer climates. Thesis Antarc* Antarctic Antarctic Peninsula Antarctica South Shetland Islands Newcastle University eTheses Antarctic Antarctic Peninsula Fan Lake ENVELOPE(-37.050,-37.050,-54.500,-54.500) South Shetland Islands The Antarctic Yanou Lake ENVELOPE(-58.958,-58.958,-62.221,-62.221)
institution Open Polar
collection Newcastle University eTheses
op_collection_id ftuninewcastleth
language English
description Phd Thesis Assessing the impact of past phases of natural warming on climatically sensitive areas, such as Antarctic and sub-Antarctic regions, will help us better understand the impact that climate warming may have in the future. In recent decades, the Antarctic Peninsula has been one of the fastest warming regions on Earth, warming at a rate of 3.4 °C per century, five times the global mean. Several phases of marked environmental change have occurred on the Antarctic Peninsula during the mid-late Holocene nonetheless, to date quantitative temperature reconstructions of terrestrial climates are not possible. GDGTs are one of few existing quantitative temperature proxies and recent developments of their use in lakes indicates their potential as a temperature proxy. Prior to application the relationship between GDGT-composition and several environmental factors, such as temperature, pH and conductivity, in Antarctic and sub-Antarctic lakes was assessed. Temperature explained a statistically significant independent control on the composition of branched GDGTs in the lakes and a new regional Antarctic and sub-Antarctic GDGT-temperature calibration was developed. Within this calibration, GDGT-IIIb was a statistically significant component indicating its importance in these environments. Applying the new GDGT-temperature calibration to sediment cores from Fan Lake, South Georgia and Yanou Lake, South Shetland Islands allowed the quantitative reconstruction of past temperatures during the Mid to Late-Holocene. The reconstructions showed varied temperatures throughout the records, evidencing the mid-Holocene warm period, and potentially the Medieval Climate Anomaly and Little Ice Age. Neither record, however, reconstructed the recent rapid warming seen in the glacial meltwater and instrumental records. A comparison of Fan Lake and Yanou Lake with other records from Antarctica and Chile showed periods of coherence between records alongside periods of inconsistency. This comparison also enabled potential changes in the PFZ to be considered, suggesting a more poleward position of the PFZ during warmer climates.
format Thesis
author Foster, Louise Claire
spellingShingle Foster, Louise Claire
Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments
author_facet Foster, Louise Claire
author_sort Foster, Louise Claire
title Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments
title_short Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments
title_full Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments
title_fullStr Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments
title_full_unstemmed Reconstructing mid-late Holocene climate and environmental change in Antarctica using Glycerol Dialkyl Glycerol Tetraethers (GDGTs) and pigments in lake sediments
title_sort reconstructing mid-late holocene climate and environmental change in antarctica using glycerol dialkyl glycerol tetraethers (gdgts) and pigments in lake sediments
publisher Newcastle University
publishDate 2015
url http://hdl.handle.net/10443/2985
long_lat ENVELOPE(-37.050,-37.050,-54.500,-54.500)
ENVELOPE(-58.958,-58.958,-62.221,-62.221)
geographic Antarctic
Antarctic Peninsula
Fan Lake
South Shetland Islands
The Antarctic
Yanou Lake
geographic_facet Antarctic
Antarctic Peninsula
Fan Lake
South Shetland Islands
The Antarctic
Yanou Lake
genre Antarc*
Antarctic
Antarctic Peninsula
Antarctica
South Shetland Islands
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antarctica
South Shetland Islands
op_relation http://hdl.handle.net/10443/2985
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