Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka

The global biogeochemical cycle of methane has received wide attention because of methane's role as a greenhouse gas. Measurements of methane in air trapped in Greenland ice cores provide a high-resolution record of methane levels in the atmosphere over the past ~100 ka, providing clues about w...

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Main Authors: Grachev, Alexi M., Brook, Edward J., Severinghaus, Jeffrey P., Pisias, Nicklas G.
Format: Article in Journal/Newspaper
Language:English
unknown
Published: American Geophysical Union
Subjects:
Online Access:https://ir.library.oregonstate.edu/concern/articles/kw52j971r
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spelling ftoregonstate:ir.library.oregonstate.edu:kw52j971r 2024-04-14T08:12:11+00:00 Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka Grachev, Alexi M. Brook, Edward J. Severinghaus, Jeffrey P. Pisias, Nicklas G. https://ir.library.oregonstate.edu/concern/articles/kw52j971r English [eng] eng unknown American Geophysical Union https://ir.library.oregonstate.edu/concern/articles/kw52j971r Copyright Not Evaluated Article ftoregonstate 2024-03-21T15:48:20Z The global biogeochemical cycle of methane has received wide attention because of methane's role as a greenhouse gas. Measurements of methane in air trapped in Greenland ice cores provide a high-resolution record of methane levels in the atmosphere over the past ~100 ka, providing clues about what controls the methane cycle on geologic timescales. Remarkable similarity between local temperature recorded in Greenland ice cores and changes in global methane concentrations has been noted in previous studies, with the inference that the local temperature variations have global significance, but the resolution of sampling and measurement precision limited fine-scale comparison of these variables. In this work a higher-precision (~2 ppb) methane data set was obtained from the Greenland Ice Sheet Project 2 (GISP2) ice core for the time interval between 86 and 68 ka, encompassing three large abrupt warming events early in the last glacial period: Dansgaard-Oeschger (D-O) events 19, 20, and 21. The new data set consists of duplicate measurements at 158 depths, with average time resolution of 120 years. Such detailed measurements over D-O 21, the longest in Greenland records, have not yet been reported for other ice cores. The new data set documents short-term variability (~20 ppb typical amplitude), which is remarkably persistent, and in many cases similar features are observed in the most detailed published δ¹⁸O[subscript ice] record. High-precision GISP2 δ¹⁵N data show that changes in Greenland temperature are synchronous with the methane variations at the onset of D-O events 19, 20, and 21, supporting previous results from the Greenland Ice Core Project ice core for D-O 19 and 20. Cross-spectral analysis quantifies the extremely close similarity between the new methane record and the δ¹⁸O[subscript ice] record. Because methane sources are widely distributed over the globe, this work further validates δ¹⁸O[subscript ice] at Greenland summit as a geographically broad climate indicator on millennial to multicentennial ... Article in Journal/Newspaper Greenland Greenland ice core Greenland Ice core Project Greenland ice cores Greenland Ice Sheet Project ice core Ice Sheet ScholarsArchive@OSU (Oregon State University) Greenland
institution Open Polar
collection ScholarsArchive@OSU (Oregon State University)
op_collection_id ftoregonstate
language English
unknown
description The global biogeochemical cycle of methane has received wide attention because of methane's role as a greenhouse gas. Measurements of methane in air trapped in Greenland ice cores provide a high-resolution record of methane levels in the atmosphere over the past ~100 ka, providing clues about what controls the methane cycle on geologic timescales. Remarkable similarity between local temperature recorded in Greenland ice cores and changes in global methane concentrations has been noted in previous studies, with the inference that the local temperature variations have global significance, but the resolution of sampling and measurement precision limited fine-scale comparison of these variables. In this work a higher-precision (~2 ppb) methane data set was obtained from the Greenland Ice Sheet Project 2 (GISP2) ice core for the time interval between 86 and 68 ka, encompassing three large abrupt warming events early in the last glacial period: Dansgaard-Oeschger (D-O) events 19, 20, and 21. The new data set consists of duplicate measurements at 158 depths, with average time resolution of 120 years. Such detailed measurements over D-O 21, the longest in Greenland records, have not yet been reported for other ice cores. The new data set documents short-term variability (~20 ppb typical amplitude), which is remarkably persistent, and in many cases similar features are observed in the most detailed published δ¹⁸O[subscript ice] record. High-precision GISP2 δ¹⁵N data show that changes in Greenland temperature are synchronous with the methane variations at the onset of D-O events 19, 20, and 21, supporting previous results from the Greenland Ice Core Project ice core for D-O 19 and 20. Cross-spectral analysis quantifies the extremely close similarity between the new methane record and the δ¹⁸O[subscript ice] record. Because methane sources are widely distributed over the globe, this work further validates δ¹⁸O[subscript ice] at Greenland summit as a geographically broad climate indicator on millennial to multicentennial ...
format Article in Journal/Newspaper
author Grachev, Alexi M.
Brook, Edward J.
Severinghaus, Jeffrey P.
Pisias, Nicklas G.
spellingShingle Grachev, Alexi M.
Brook, Edward J.
Severinghaus, Jeffrey P.
Pisias, Nicklas G.
Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka
author_facet Grachev, Alexi M.
Brook, Edward J.
Severinghaus, Jeffrey P.
Pisias, Nicklas G.
author_sort Grachev, Alexi M.
title Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka
title_short Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka
title_full Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka
title_fullStr Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka
title_full_unstemmed Relative timing and variability of atmospheric methane and GISP2 oxygen isotopes between 68 and 86 ka
title_sort relative timing and variability of atmospheric methane and gisp2 oxygen isotopes between 68 and 86 ka
publisher American Geophysical Union
url https://ir.library.oregonstate.edu/concern/articles/kw52j971r
geographic Greenland
geographic_facet Greenland
genre Greenland
Greenland ice core
Greenland Ice core Project
Greenland ice cores
Greenland Ice Sheet Project
ice core
Ice Sheet
genre_facet Greenland
Greenland ice core
Greenland Ice core Project
Greenland ice cores
Greenland Ice Sheet Project
ice core
Ice Sheet
op_relation https://ir.library.oregonstate.edu/concern/articles/kw52j971r
op_rights Copyright Not Evaluated
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