An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica

In 2013, an ice core was recovered from Roosevelt Island in the Ross Sea, Antarctica, as part of the Roosevelt Island Climate Evolution (RICE) project. Roosevelt Island is located between two submarine troughs carved by paleo-ice-streams. The RICE ice core provides new important information about th...

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Main Authors: Lee, James E., Brook, Edward J., Bertler, Nancy A. N., Buizert, Christo, Baisden, Troy, Blunier, Thomas, Ciobanu, V. Gabriela, Conway, Howard, Dahl-Jensen, Dorthe, Fudge, Tyler J., Hindmarsh, Richard, Keller, Elizabeth D., Parrenin, Frédéric, Severinghaus, Jeffrey P., Vallelonga, Paul, Waddington, Edwin D., Winstrup, Mai
Format: Other/Unknown Material
Language:English
Published: 2018
Subjects:
Tac
Online Access:https://doi.org/10.5194/cp-2018-68
https://cp.copernicus.org/preprints/cp-2018-68/
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spelling ftcopernicus:oai:publications.copernicus.org:cpd69787 2023-05-15T13:55:28+02:00 An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica Lee, James E. Brook, Edward J. Bertler, Nancy A. N. Buizert, Christo Baisden, Troy Blunier, Thomas Ciobanu, V. Gabriela Conway, Howard Dahl-Jensen, Dorthe Fudge, Tyler J. Hindmarsh, Richard Keller, Elizabeth D. Parrenin, Frédéric Severinghaus, Jeffrey P. Vallelonga, Paul Waddington, Edwin D. Winstrup, Mai 2018-09-26 info:eu-repo/semantics/application/pdf https://doi.org/10.5194/cp-2018-68 https://cp.copernicus.org/preprints/cp-2018-68/ eng eng info:eu-repo/grantAgreement/EC/FP7/610055 doi:10.5194/cp-2018-68 https://cp.copernicus.org/preprints/cp-2018-68/ info:eu-repo/semantics/openAccess eISSN: 1814-9332 info:eu-repo/semantics/Text 2018 ftcopernicus https://doi.org/10.5194/cp-2018-68 2020-07-20T16:23:13Z In 2013, an ice core was recovered from Roosevelt Island in the Ross Sea, Antarctica, as part of the Roosevelt Island Climate Evolution (RICE) project. Roosevelt Island is located between two submarine troughs carved by paleo-ice-streams. The RICE ice core provides new important information about the past configuration of the West Antarctic Ice Sheet and its retreat during the most recent deglaciation. In this work, we present the RICE17 chronology and discuss preliminary observations from the new records of methane, the isotopic composition of atmospheric molecular oxygen (δ 18 O-O atm ), the isotopic composition of atmospheric molecular nitrogen (δ 15 N-N 2 ) and total air content (TAC). RICE17 is a composite chronology combining annual layer interpretations, gas synchronization, and firn modeling strategies in different sections of the core. An automated matching algorithm is developed for synchronizing the high-resolution section of the RICE gas records (60–720 m, 1971 CE to 30 ka) to corresponding records from the WAIS Divide ice core, while deeper sections are manually matched. Ice age for the top 343 m (2635 yr BP, before 1950 C.E.) is derived from annual layer interpretations and described in the accompanying paper by Winstrup et al. (2017). For deeper sections, the RICE17 ice age scale is based on the gas age constraints and the ice age-gas age offset estimated by a firn densification model. Novel aspects of this work include: 1) stratigraphic matching of centennial-scale variations in methane for pre-anthropogenic time periods, a strategy which will be applicable for developing precise chronologies for future ice cores, 2) the observation of centennial-scale variability in methane throughout the Holocene which suggests that similar variations during the late preindustrial period need not be anthropogenic, and 3) the observation of continuous climate records dating back to ∼ 65 ka which provide evidence that the Roosevelt Island Ice Dome was a constant feature throughout the last glacial period. Other/Unknown Material Antarc* Antarctic Antarctica ice core Ice Sheet Roosevelt Island Ross Sea Copernicus Publications: E-Journals Antarctic Roosevelt Island ENVELOPE(-162.000,-162.000,-79.283,-79.283) Ross Sea Tac ENVELOPE(-59.517,-59.517,-62.500,-62.500) West Antarctic Ice Sheet
institution Open Polar
collection Copernicus Publications: E-Journals
op_collection_id ftcopernicus
language English
description In 2013, an ice core was recovered from Roosevelt Island in the Ross Sea, Antarctica, as part of the Roosevelt Island Climate Evolution (RICE) project. Roosevelt Island is located between two submarine troughs carved by paleo-ice-streams. The RICE ice core provides new important information about the past configuration of the West Antarctic Ice Sheet and its retreat during the most recent deglaciation. In this work, we present the RICE17 chronology and discuss preliminary observations from the new records of methane, the isotopic composition of atmospheric molecular oxygen (δ 18 O-O atm ), the isotopic composition of atmospheric molecular nitrogen (δ 15 N-N 2 ) and total air content (TAC). RICE17 is a composite chronology combining annual layer interpretations, gas synchronization, and firn modeling strategies in different sections of the core. An automated matching algorithm is developed for synchronizing the high-resolution section of the RICE gas records (60–720 m, 1971 CE to 30 ka) to corresponding records from the WAIS Divide ice core, while deeper sections are manually matched. Ice age for the top 343 m (2635 yr BP, before 1950 C.E.) is derived from annual layer interpretations and described in the accompanying paper by Winstrup et al. (2017). For deeper sections, the RICE17 ice age scale is based on the gas age constraints and the ice age-gas age offset estimated by a firn densification model. Novel aspects of this work include: 1) stratigraphic matching of centennial-scale variations in methane for pre-anthropogenic time periods, a strategy which will be applicable for developing precise chronologies for future ice cores, 2) the observation of centennial-scale variability in methane throughout the Holocene which suggests that similar variations during the late preindustrial period need not be anthropogenic, and 3) the observation of continuous climate records dating back to ∼ 65 ka which provide evidence that the Roosevelt Island Ice Dome was a constant feature throughout the last glacial period.
format Other/Unknown Material
author Lee, James E.
Brook, Edward J.
Bertler, Nancy A. N.
Buizert, Christo
Baisden, Troy
Blunier, Thomas
Ciobanu, V. Gabriela
Conway, Howard
Dahl-Jensen, Dorthe
Fudge, Tyler J.
Hindmarsh, Richard
Keller, Elizabeth D.
Parrenin, Frédéric
Severinghaus, Jeffrey P.
Vallelonga, Paul
Waddington, Edwin D.
Winstrup, Mai
spellingShingle Lee, James E.
Brook, Edward J.
Bertler, Nancy A. N.
Buizert, Christo
Baisden, Troy
Blunier, Thomas
Ciobanu, V. Gabriela
Conway, Howard
Dahl-Jensen, Dorthe
Fudge, Tyler J.
Hindmarsh, Richard
Keller, Elizabeth D.
Parrenin, Frédéric
Severinghaus, Jeffrey P.
Vallelonga, Paul
Waddington, Edwin D.
Winstrup, Mai
An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica
author_facet Lee, James E.
Brook, Edward J.
Bertler, Nancy A. N.
Buizert, Christo
Baisden, Troy
Blunier, Thomas
Ciobanu, V. Gabriela
Conway, Howard
Dahl-Jensen, Dorthe
Fudge, Tyler J.
Hindmarsh, Richard
Keller, Elizabeth D.
Parrenin, Frédéric
Severinghaus, Jeffrey P.
Vallelonga, Paul
Waddington, Edwin D.
Winstrup, Mai
author_sort Lee, James E.
title An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica
title_short An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica
title_full An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica
title_fullStr An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica
title_full_unstemmed An 83 000 year old ice core from Roosevelt Island, Ross Sea, Antarctica
title_sort 83 000 year old ice core from roosevelt island, ross sea, antarctica
publishDate 2018
url https://doi.org/10.5194/cp-2018-68
https://cp.copernicus.org/preprints/cp-2018-68/
long_lat ENVELOPE(-162.000,-162.000,-79.283,-79.283)
ENVELOPE(-59.517,-59.517,-62.500,-62.500)
geographic Antarctic
Roosevelt Island
Ross Sea
Tac
West Antarctic Ice Sheet
geographic_facet Antarctic
Roosevelt Island
Ross Sea
Tac
West Antarctic Ice Sheet
genre Antarc*
Antarctic
Antarctica
ice core
Ice Sheet
Roosevelt Island
Ross Sea
genre_facet Antarc*
Antarctic
Antarctica
ice core
Ice Sheet
Roosevelt Island
Ross Sea
op_source eISSN: 1814-9332
op_relation info:eu-repo/grantAgreement/EC/FP7/610055
doi:10.5194/cp-2018-68
https://cp.copernicus.org/preprints/cp-2018-68/
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.5194/cp-2018-68
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