Abstract:
The dataset comprises of chronostratigraphic data from the Fildes Peninsula, King George Island, South Shetland Islands. The data have been used to constrain deglaciation and climate-glacier dynamics on the Fildes Peninsula. These data include C-14 density probability phases. Data was compiled with with Potter Peninsula and King George Island data and a non-parametric phase model applied.
Data collected in this study were funded by: Centro de Investigaciones en Ciencias de la Tierra (CICTERRA), the Direccion Nacional del Antartico/Instituto Antartico Argentino (DNA/IAA) in the framework of the Project PICTA, 2011 - 0102, IAA "Geomorfologia y Geologia Glaciar del Archipielago James Ross e Islas Shetland del Sur, Sector Norte de la Peninsula Antartica"; the Alfred Wegener Institute (AWI) research program Polar regions and Coasts in a changing Earth System (PACES II); IMCONet (FP7 IRSES, action no. 318718); the Natural Environment Research Council (NERC/BAS-CGS Grant no.81); the NERC/BAS science programmes CACHE-PEP: Natural climate variability - extending the Americas palaeoclimate transect through the Antarctic Peninsula to the pole and GRADES-QWAD: Quaternary West Antarctic Deglaciations. We thank the crews of the Argentine research station "Carlini" and the adjoined German Dallmann-Labor (AWI) Laboratory, the Uruguayan research station "Artigas", the Russian Bellingshausen Station, the Chinese Great Wall Station, Base Presidente Eduardo Frei Montalva, the Brazilian Navy Almirante Maximiano, the UK Navy HMS Endurance and NERC/BAS James Clark Ross for logistical support during the 2006, 2011, 2014 and 2015 field seasons.
Keywords:
South Shetland Islands, deglaciation, geomorphological mapping, glacial readvance, radiocarbon dating, stratigraphy
Heredia Barion, P., Strelin, J., Spiegel, C., Binnie, S., Wacker, L., Pearson, E., Bentley, M., Hocking, E., & Roberts, S. (2023). Data compilation for Holocene glacial readvance from the Fildes Peninsula, South Shetland Islands, northern Antarctic Peninsula. (Version 1.0) [Data set]. NERC EDS UK Polar Data Centre. https://doi.org/10.5285/a89028f1-76d0-41f4-bee0-021633a8b0ed
Access Constraints: | No restrictions apply. |
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Use Constraints: | This data is governed by the NERC data policy http://www.nerc.ac.uk/research/sites/data/policy/ and supplied under Open Government Licence v.3 http://www.nationalarchives.gov.uk/doc/open-government-licence/version/3/. Cite as follows: Heredia Barion, P., Strelin, J., Spiegel, C., Binnie, S., Wacker, L., Pearson, E., Bentley, M., Hocking, E., & Roberts, S. (2023). Data compilation for Holocene glacial readvance from the Fildes Peninsula, South Shetland Islands, northern Antarctic Peninsula. (Version 1.0) [Data set]. NERC EDS UK Polar Data Centre. https://doi.org/10.5285/A89028F1-76D0-41F4-BEE0-021633A8B0ED |
Creation Date: | 2022-12-21 |
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Dataset Progress: | Complete |
Dataset Language: | English |
ISO Topic Categories: |
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Parameters: |
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Personnel: | |
Name | UK Polar Data Centre |
Role(s) | Metadata Author |
Organisation | British Antarctic Survey |
Name | Dr Pablo A Heredia Barion |
Role(s) | Investigator |
Organisation | University of Bremen |
Name | Dr Jorge A Strelin |
Role(s) | Investigator |
Organisation | Centro de Investigaciones en Ciencias de la Tierra (CONICET-UNC) |
Name | Prof Cornelia Spiegel |
Role(s) | Investigator |
Organisation | University of Bremen |
Name | Steven Binnie |
Role(s) | Investigator |
Organisation | University of Cologne |
Name | Dr Lukas Wacker |
Role(s) | Investigator |
Organisation | ETH Zurich |
Name | Emma J Pearson |
Role(s) | Investigator |
Organisation | Newcastle University |
Name | Michael J Bentley |
Role(s) | Investigator |
Organisation | Durham University |
Name | Dr Emma Hocking |
Role(s) | Investigator |
Organisation | Northumbria University |
Name | Dr Stephen J Roberts |
Role(s) | Investigator, Technical Contact |
Organisation | British Antarctic Survey |
Parent Dataset: | N/A |
Reference: | References listed in the SSI_db.csv file SSI_Advance Hall BL. (2007) Late-Holocene advance of the Collins Ice Cap, King George Island, South Shetland Islands. The Holocene 17: 1253-1258. Heredia Barion, P., Roberts, S.J., Spiegel, C., et al. (2023). Holocene deglaciation and glacier readvances on the Fildes Peninsula, King George Island, NW Antarctic Peninsula. The Holocene. https://doi.org/10.1177/09596836231157059 Heredia Barion, P.A., Strelin, J.A., Roberts, S.J., et al. (2022). The impact of Holocene deglaciation and glacial dynamics on the landscapes and geomorphology of Potter Peninsula, King George Island (Isla 25 Mayo), NW Antarctic Peninsula. Frontiers in Earth Science https://doi.org/10.3389/feart.2022.1073075 Oliva M, Antoniades D, Serrano E, et al. (2019) The deglaciation of Barton Peninsula (King George Island, South Shetland Islands, Antarctica) based on geomorphological evidence and lacustrine records. Polar Record 55: 177-188. Sugden DE and John BS. (1973) The ages of glacier fluctuations in the South Shetland Islands, Antarctica. In: van Zinderen; Bakker EM (ed) Palaeoecology of Africa, the Surrounding Islands and Antarctica. Balkema, Cape Town, 141-159. SSI_Retreat Birkenmajer K, Ochyra R, Olsson IU, Stuchlik L. (1985) Mid-Holocene radiocarbon-date peat at Admiralty Bay, King George Island (South Shetland Islands, West Antarctica). Bulletin of the Polish Academy of Sciences, Earth Sciences, 33: 7-13. Bjorck S, Hakansson H, Olsson S, Barnekow L and Janssens J. (1993) Palaeoclimatic studies in South Shetland Islands, Antarctica, based on numerous stratigraphic variables in lake sediments. Journal of Paleolimnology 8: 233-272. Bjorck S, Hakansson H, Zale R, et al. (1991a) A late Holocene lake sediment sequence from Livingston Island, South Shetland Islands, with palaeoclimatic implications. Antarctic Science 3: 61-72. Bjorck S, Nils Malmer, Christian Hjort, Per Sandgren, Olafur Ingolfsson, Bo Wallen, Ronald Ian Lewis Smith, and Bodil Liedberg Jonsson. (1991b) Stratigraphic and Paleoclimatic Studies of a 5500-Year-Old Moss Bank on Elephant Island, Antarctica. Arctic and Alpine Research 23: 361-374. Bjorck, S., Hjort, C., Ingolfsson, O., Zale, R.Ising, J. 1996. Holocene deglaciation chronology from lake sediments. In Lopez-Martinez, J., Thomson, M.R.A. et al., eds. Geomorphological map of Byers Peninsula, Livingston Island. BAS GEOMAP Series, Sheet 5-A. Cambridge: British Antarctic Survey, 49-51. del Valle RA, Montalti D, and Inbar M. (2002) Mid-Holocene macrofossil-bearing raised marine beaches at Potter Peninsula, King George Island, South Shetland Islands. Antarctic Science 14: 263-269. Hall BL. (2010) Holocene relative sea-level changes and ice fluctuations in the South Shetland Islands. Global and Planetary Change 74: 15-26. Heredia Barion, P., Roberts, S.J., Spiegel, C., et al. (2023). Holocene deglaciation and glacier readvances on the Fildes Peninsula, King George Island, NW Antarctic Peninsula. The Holocene. https://doi.org/10.1177/09596836231157059 Heredia Barion, P.A., Strelin, J.A., Roberts, S.J., et al. (2022). The impact of Holocene deglaciation and glacial dynamics on the landscapes and geomorphology of Potter Peninsula, King George Island (Isla 25 Mayo), NW Antarctic Peninsula. Frontiers in Earth Science https://doi.org/10.3389/feart.2022.1073075 Jeong GY. (2006) Radiocarbon ages of sorted circles on King George Island, South Shetland Islands, West Antarctica. Antarctic Science 18: 265-270. Mausbacher R, Muller J and Schmidt R. (1989) Evolution of postglacial sedimentation in Antarctic lakes (King George Island). Zeitschrift fur Geomorphologie 33: 219-234. Mausbacher R. (1991) Die jungquartare Relief-und Klimageschichte im Bereich der Fildeshalbinsel Sud-Shetland Inseln, Antarktis. Heidelberger Geographischen Arbeiten. Geographischen Instituts der Universitat Heidelberg: Heidelberg. Oliva M, Antoniades D, Giralt S, et al. (2016a) La deglaciacion de las areas libres de hielo de las islas Shetland del Sur (Antártida). Ejemplos de Byers (Livingston) y Barton (King George). Cuaternario y Geomorfologia: 14. Oliva M, Antoniades D, Giralt S, Granados I, Pla-Rabes S, Toro M, et al. (2016b) The Holocene deglaciation of the Byers Peninsula (Livingston Island, Antarctica) based on the dating of lake sedimentary records. Geomorphology 261: 89-102. Oliva M, Antoniades D, Serrano E, Giralt S, Liu EJ, Granados I, et al. (2019) The deglaciation of Barton Peninsula (King George Island, South Shetland Islands, Antarctica) based on geomorphological evidence and lacustrine records. Polar Record 55: 177-188. Schmidt R, Mausbacher R and Muller J. (1990) Holocene diatom flora and stratigraphy from sediment cores of two Antarctic lakes (King George Island). Journal of Paleolimnology 3: 55-74. Seong YB, Owen LA, Lim HS, Yoon HI, Kim Y, Lee YI, Caffee MW. (2009). Rate of late Quaternary ice-cap thinning on King George Island, South Shetland Islands, West Antarctica defined by cosmogenic 36Cl surface exposure dating. Boreas, 38: 207-213. Simms AR, Ivins ER, DeWitt R, Kouremenos P and Simkins LM. (2012) Timing of the most recent Neoglacial advance and retreat in the South Shetland Islands, Antarctic Peninsula: insights from raised beaches and Holocene uplift rates. Quaternary Science Reviews 47: 41-55. Sun LG, Liu XD, Yin XB, Xie ZQ and Zhao JL. (2005) Sediments in palaeo-notches: potential proxy records for palaeoclimatic changes in Antarctica. Palaeogeography Palaeoclimatology Palaeoecology 218: 175-193. Tatur A, Martinez-Macchiavello JC, Niegodzisz J and del Valle R. (1999) A record of Holocene environmental changes in sediment core of Hotel Lake, King George Island, Antarctica. Polish Polar Studies 26 Polar Symposium. Toro M, Granados I, Pla S, Giralt S, Antoniades D, Galan L, et al. (2013) Chronostratigraphy of the sedimentary record of Limnopolar Lake, Byers Peninsula, Livingston Island, Antarctica. Antarctic Science 25: 198-212. Watcham EP, Bentley MJ, Hodgson DA, Roberts SJ, Fretwell PT, Lloyd JM, et al. (2011) A new Holocene relative sea level curve for the South Shetland Islands, Antarctica. Quaternary Science Reviews 30: 3152-3170. Yoon H-I, Khim B-K, Lee K, Park Y-H and Yoo K-C. (2006) Reconstruction of postglacial paleoproductivity in Long Lake, King George Island, West Antarctica. Polish Polar Research 7: 189-206. SSI_Moss.csv Bjorck S, Hakansson H, Olsson S, Barnekow L and Janssens J. (1993) Palaeoclimatic studies in South Shetland Islands, Antarctica, based on numerous stratigraphic variables in lake sediments. Journal of Paleolimnology 8: 233-272. Bjorck S, Hakansson H, Zale R, et al. (1991a) A late Holocene lake sediment sequence from Livingston Island, South Shetland Islands, with palaeoclimatic implications. Antarctic Science 3: 61-72. Bjorck, S., Hjort, C., Ingolfsson, O., Zale, R.Ising, J. 1996. Holocene deglaciation chronology from lake sediments. In Lopez-Martinez, J., Thomson, M.R.A. et al., eds. Geomorphological map of Byers Peninsula, Livingston Island. BAS GEOMAP Series, Sheet 5-A. Cambridge: British Antarctic Survey, 49-51. Heredia Barion, P., Roberts, S.J., Spiegel, C., et al. (2023). Holocene deglaciation and glacier readvances on the Fildes Peninsula, King George Island, NW Antarctic Peninsula. The Holocene. https://doi.org/10.1177/09596836231157059 Heredia Barion, P.A., Strelin, J.A., Roberts, S.J., et al. (2022). The impact of Holocene deglaciation and glacial dynamics on the landscapes and geomorphology of Potter Peninsula, King George Island (Isla 25 Mayo), NW Antarctic Peninsula. Frontiers in Earth Science https://doi.org/10.3389/feart.2022.1073075 Mausbacher R, Muller J and Schmidt R. (1989) Evolution of postglacial sedimentation in Antarctic lakes (King George Island). Zeitschrift fur Geomorphologie 33: 219-234. Mausbacher R. (1991) Die jungquartare Relief-und Klimageschichte im Bereich der Fildeshalbinsel Sud-Shetland Inseln, Antarktis. Heidelberger Geographischen Arbeiten. Geographischen Instituts der Universitat Heidelberg: Heidelberg. Oliva M, Antoniades D, Giralt S, et al. (2016a) La deglaciacion de las areas libres de hielo de las islas Shetland del Sur (Antartida). Ejemplos de Byers (Livingston) y Barton (King George). Cuaternario y Geomorfologia: 14. Oliva M, Antoniades D, Giralt S, Granados I, Pla-Rabes S, Toro M, et al. (2016b) The Holocene deglaciation of the Byers Peninsula (Livingston Island, Antarctica) based on the dating of lake sedimentary records. Geomorphology 261: 89-102. Roberts SJ, Monien P, Foster LC, et al. (2017) Past penguin colony responses to explosive volcanism on the Antarctic Peninsula. Nature Communications 8: 14914. Tatur A, Martinez-Macchiavello JC, Niegodzisz J and del Valle R. (1999) A record of Holocene environmental changes in sediment core of Hotel Lake, King George Island, Antarctica. Polish Polar Studies 26 Polar Symposium. |
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Lineage: | Compilations of new and published age data constraining glacier advance, retreat and aquatic moss layers in lakes from the South Shetland Islands. New and published chronostratigraphic data constraining Holocene glacier readvances from the Fildes Peninsula (n=43), Potter Peninsula (n=29), and KGI (n=76) were compiled and a non-parametric phase model (i.e., a probabilistic version of the Oxcal SUM command) was applied to each dataset using the Bchron v. 4.7.6 in R (Haslett and Parnell, 2008; Parnell, 2021).The Rcarbon package v. 1.4.2 (Bevan, 2021) was used for data analysis. Additional statistical analysis was undertaken, using R v. 4.1.0/RStudio v. 1.4.1717 (primarily packages Tidyverse, ggplot2, Vegan, Rioja, Ggally v. 2.1.2, RBacon, Rcarbon, Bchron), Sigmaplot v. 14.0, C2 (Juggins, 2007) and MATLAB v. R2021a. Code, data, all packages used, and package references, can be found at: https://github.com/stever60/Fildes_Peninsula and https://github.com/stever60/Potter_Peninsula The data were used in data analysis in the following manuscripts to constrain deglaciation and glacier dynamics on Potter Peninsula and Fildes Peninsula, King George Island South Shetland Islands: Heredia Barion P, Roberts SJ, Spiegel C, Binnie SA, Wacker L, Davies J, et al. (submitted - a) Mid-late Holocene deglaciation and glacier readvances on the Fildes Peninsula, King George Island, NW Antarctic Peninsula. The Holocene. Heredia Barion P, Strelin JA, Roberts SJ, Spiegel C, Wacker L, Niedermann S, et al. (submitted - b). Holocene glacial dynamics and geomorphology of Potter Peninsula, King George Island (NW Antarctic Peninsula). Frontiers in Earth Science. Density phases produced by similar analysis of published SSI-wide data were less well-defined, likely reflecting local glacier influences and larger errors for some data, and not considered further. |
Temporal Coverage: | |
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Start Date | 2011-11-01 |
End Date | 2015-11-30 |
Spatial Coverage: | |
Latitude | |
Southernmost | -65 |
Northernmost | -62 |
Longitude | |
Westernmost | -69 |
Easternmost | -58 |
Altitude | |
Min Altitude | N/A |
Max Altitude | N/A |
Depth | |
Min Depth | N/A |
Max Depth | N/A |
Location: | |
Location | South Shetland Islands |
Detailed Location | King George Island |
Distribution: | |
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Distribution Media | N/A |
Distribution Size | 2 csv files, 103KB |
Distribution Format | N/A |
Fees | N/A |
Data Storage: | C14_prob_density_phases.csv - summary of probability phases age ranges for compilation data from the Fildes Peninsula SSI_db.csv - database of chronostratigraphic constraints on glacier advance and retreat for the South Shetland Islands |