NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core

During the last glacial cycle, Greenland temperature showed many rapid temperature variations, the so-called Dansgaard-Oeschger (DO) events. The past atmospheric methane concentration closely followed these temperature variations, which implies that the warmings recorded in Greenland were probably h...

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Published in:Climate of the Past
Main Authors: Baumgartner, M., Kindler, P., Eicher, O., Floch, G., Schilt, A., Schwander, J., Spahni, R., Capron, E., Chappellaz, J., Leuenberger, M., Fischer, H., Stocker, T. F.
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Published: Gottingen, Copernicus GmbH 2022
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Online Access:https://doi.org/10.5194/cp-10-903-2014
https://infoscience.epfl.ch/record/298356/files/cp-10-903-2014.pdf
http://infoscience.epfl.ch/record/298356
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spelling ftinfoscience:oai:infoscience.epfl.ch:298356 2023-05-15T16:27:05+02:00 NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core Baumgartner, M. Kindler, P. Eicher, O. Floch, G. Schilt, A. Schwander, J. Spahni, R. Capron, E. Chappellaz, J. Leuenberger, M. Fischer, H. Stocker, T. F. 2022-11-23T16:11:47Z https://doi.org/10.5194/cp-10-903-2014 https://infoscience.epfl.ch/record/298356/files/cp-10-903-2014.pdf http://infoscience.epfl.ch/record/298356 unknown Gottingen, Copernicus GmbH doi:10.5194/cp-10-903-2014 isi:000335374600033 https://infoscience.epfl.ch/record/298356/files/cp-10-903-2014.pdf http://infoscience.epfl.ch/record/298356 http://infoscience.epfl.ch/record/298356 Text 2022 ftinfoscience https://doi.org/10.5194/cp-10-903-2014 2023-02-13T23:12:34Z During the last glacial cycle, Greenland temperature showed many rapid temperature variations, the so-called Dansgaard-Oeschger (DO) events. The past atmospheric methane concentration closely followed these temperature variations, which implies that the warmings recorded in Greenland were probably hemispheric in extent. Here we substantially extend and complete the North Greenland Ice Core Project (NGRIP) methane record from the Preboreal Holocene (PB) back to the end of the last interglacial period with a mean time resolution of 54 yr. We relate the amplitudes of the methane increases associated with DO events to the amplitudes of the local Greenland NGRIP temperature increases derived from stable nitrogen isotope (δ15N) measurements, which have been performed along the same ice core (Kindler et al., 2014). We find the ratio to oscillate between 5 parts per billion (ppb) per °C and 18 ppb °Cg -1 with the approximate frequency of the precessional cycle. A remarkably high ratio of 25.5 ppb °Cg-1 is reached during the transition from the Younger Dryas (YD) to the PB. Analysis of the timing of the fast methane and temperature increases reveals significant lags of the methane increases relative to NGRIP temperature for DO events 5, 9, 10, 11, 13, 15, 19, and 20. These events generally have small methane increase rates and we hypothesize that the lag is caused by pronounced northward displacement of the source regions from stadial to interstadial. We further show that the relative interpolar concentration difference (rIPD) of methane is about 4.5% for the stadials between DO events 18 and 20, which is in the same order as in the stadials before and after DO event 2 around the Last Glacial Maximum. The rIPD of methane remains relatively stable throughout the full last glacial, with a tendency for elevated values during interstadial compared to stadial periods. © 2014 Author(s) CC Attribution 3.0 License. Text Greenland Greenland ice core Greenland Ice core Project ice core NGRIP North Greenland North Greenland Ice Core Project EPFL Infoscience (Ecole Polytechnique Fédérale Lausanne) Greenland Climate of the Past 10 2 903 920
institution Open Polar
collection EPFL Infoscience (Ecole Polytechnique Fédérale Lausanne)
op_collection_id ftinfoscience
language unknown
description During the last glacial cycle, Greenland temperature showed many rapid temperature variations, the so-called Dansgaard-Oeschger (DO) events. The past atmospheric methane concentration closely followed these temperature variations, which implies that the warmings recorded in Greenland were probably hemispheric in extent. Here we substantially extend and complete the North Greenland Ice Core Project (NGRIP) methane record from the Preboreal Holocene (PB) back to the end of the last interglacial period with a mean time resolution of 54 yr. We relate the amplitudes of the methane increases associated with DO events to the amplitudes of the local Greenland NGRIP temperature increases derived from stable nitrogen isotope (δ15N) measurements, which have been performed along the same ice core (Kindler et al., 2014). We find the ratio to oscillate between 5 parts per billion (ppb) per °C and 18 ppb °Cg -1 with the approximate frequency of the precessional cycle. A remarkably high ratio of 25.5 ppb °Cg-1 is reached during the transition from the Younger Dryas (YD) to the PB. Analysis of the timing of the fast methane and temperature increases reveals significant lags of the methane increases relative to NGRIP temperature for DO events 5, 9, 10, 11, 13, 15, 19, and 20. These events generally have small methane increase rates and we hypothesize that the lag is caused by pronounced northward displacement of the source regions from stadial to interstadial. We further show that the relative interpolar concentration difference (rIPD) of methane is about 4.5% for the stadials between DO events 18 and 20, which is in the same order as in the stadials before and after DO event 2 around the Last Glacial Maximum. The rIPD of methane remains relatively stable throughout the full last glacial, with a tendency for elevated values during interstadial compared to stadial periods. © 2014 Author(s) CC Attribution 3.0 License.
format Text
author Baumgartner, M.
Kindler, P.
Eicher, O.
Floch, G.
Schilt, A.
Schwander, J.
Spahni, R.
Capron, E.
Chappellaz, J.
Leuenberger, M.
Fischer, H.
Stocker, T. F.
spellingShingle Baumgartner, M.
Kindler, P.
Eicher, O.
Floch, G.
Schilt, A.
Schwander, J.
Spahni, R.
Capron, E.
Chappellaz, J.
Leuenberger, M.
Fischer, H.
Stocker, T. F.
NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core
author_facet Baumgartner, M.
Kindler, P.
Eicher, O.
Floch, G.
Schilt, A.
Schwander, J.
Spahni, R.
Capron, E.
Chappellaz, J.
Leuenberger, M.
Fischer, H.
Stocker, T. F.
author_sort Baumgartner, M.
title NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core
title_short NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core
title_full NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core
title_fullStr NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core
title_full_unstemmed NGRIP CH4 concentration from 120 to 10 kyr before present and its relation to a δ15N temperature reconstruction from the same ice core
title_sort ngrip ch4 concentration from 120 to 10 kyr before present and its relation to a δ15n temperature reconstruction from the same ice core
publisher Gottingen, Copernicus GmbH
publishDate 2022
url https://doi.org/10.5194/cp-10-903-2014
https://infoscience.epfl.ch/record/298356/files/cp-10-903-2014.pdf
http://infoscience.epfl.ch/record/298356
geographic Greenland
geographic_facet Greenland
genre Greenland
Greenland ice core
Greenland Ice core Project
ice core
NGRIP
North Greenland
North Greenland Ice Core Project
genre_facet Greenland
Greenland ice core
Greenland Ice core Project
ice core
NGRIP
North Greenland
North Greenland Ice Core Project
op_source http://infoscience.epfl.ch/record/298356
op_relation doi:10.5194/cp-10-903-2014
isi:000335374600033
https://infoscience.epfl.ch/record/298356/files/cp-10-903-2014.pdf
http://infoscience.epfl.ch/record/298356
op_doi https://doi.org/10.5194/cp-10-903-2014
container_title Climate of the Past
container_volume 10
container_issue 2
container_start_page 903
op_container_end_page 920
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