Lee, Giyoon; Ahn, Jinho; Ju, Hyeontae; Ritterbusch, Florian; Oyabu, Ikumi; Buizert, Christo; Kim, S; Moon, Jangil; Ghosh, Sambit; Kawamura, Kenji; Lu, Zheng-Tian; Hong, Sangbum; Han, Changhee; Hur, Soon Do; Jiang, Wei; Yang, Guo-Min (2022): Properties of ice core #23 from Larsen blue ice area, East Antarctica [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.946199, In: Lee, G et al. (2022): Chronology, gas composition (CO2, CH4, N2O, δ18Oatm, δ15N-N2, δO2/N2, δAr/N2), and stable water isotopes (δ2Hice, δ18Oice) in ice cores from Larsen blue ice area, East Antarctica [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.946096
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Abstract:
Blue ice areas (BIAs) have several advantages for reconstructing past climate. However, the complicated ice flow in the areas hinders constraining the age. We apply state-of-the-art techniques and show that the ages cover the last deglaciation for Larsen BIA. Our study demonstrates that Larsen BIA in Northern Victoria Land helps in reconstructing the past climate during the last deglaciation. This data set presents gas composition (CO2, CH4, N2O, δ18Oatm, δ15N-N2, δO2/N2, δAr/N2), stable water isotopes (δ2Hice, δ18Oice), and the chronology of Larsen BIA. The ice cores were collected in January 2019 in Northern Victoria Land, East Antarctica. Gas composition analysis was conducted at Seoul National University and National Institute of Polar Research. Stable water isotopes were analyzed at Korea Polar Research Institute. Data sets were also published as a supplement of Lee et al. (2022) titled with “Chronostratigraphy of Larsen blue ice area in Northern Victoria Land, East Antarctica, and its implications for paleoclimate”, The Cryosphere.
Keyword(s):
Supplement to:
Lee, Giyoon; Ahn, Jinho; Ju, Hyeontae; Ritterbusch, Florian; Oyabu, Ikumi; Buizert, Christo; Kim, S; Moon, Jangil; Ghosh, Sambit; Kawamura, Kenji; Lu, Zheng-Tian; Hong, Sangbum; Han, Changhee; Hur, Soon Do; Jiang, Wei; Yang, Guo-Min (2022): Chronostratigraphy of the Larsen blue-ice area in northern Victoria Land, East Antarctica, and its implications for paleoclimate. The Cryosphere, 16(6), 2301-2324, https://doi.org/10.5194/tc-16-2301-2022
Coverage:
Latitude: -74.931900 * Longitude: 161.601800
Date/Time Start: 2019-01-01T00:00:00 * Date/Time End: 2019-01-31T00:00:00
Minimum DEPTH, ice/snow: 0.20 m * Maximum DEPTH, ice/snow: 10.35 m
Event(s):
Larsen_BIA_2019 * Latitude: -74.931900 * Longitude: 161.601800 * Date/Time Start: 2019-01-01T00:00:00 * Date/Time End: 2019-01-31T00:00:00
Comment:
*All data here were measured in Korea Polar Reasearch Institute (KOPRI)
*Table S9 in the supplement of Lee et al. (2022)
*Data set values were used in Fig. 4 in Lee et al. (2022)
Parameter(s):
# | Name | Short Name | Unit | Principal Investigator | Method/Device | Comment |
---|---|---|---|---|---|---|
1 | DEPTH, ice/snow | Depth ice/snow | m | Lee, Giyoon | Geocode | |
2 | Ice age | Ice age | ka BP | Lee, Giyoon | Antarctic ice core chronology (AICC2012) | AICC2012 |
3 | Ice age | Ice age | ka BP | Lee, Giyoon | Age model, WD2014 | WD2014 |
4 | δ18O, water | δ18O H2O | ‰ SMOW | Lee, Giyoon | Isotope ratio mass spectrometry | vs. VSMOW |
5 | δ Deuterium, water | δD H2O | ‰ SMOW | Lee, Giyoon | Isotope ratio mass spectrometry | vs. VSMOW |
6 | Deuterium excess | d xs | ‰ | Lee, Giyoon | Isotope ratio mass spectrometry |
License:
Creative Commons Attribution 4.0 International (CC-BY-4.0)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
260 data points