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Onset of long-term cooling of Greenland near the Eocene-Oligocene boundary as revealed by branched tetraether lipids

Onset of long-term cooling of Greenland near the Eocene-Oligocene boundary as revealed by branched tetraether lipids
Onset of long-term cooling of Greenland near the Eocene-Oligocene boundary as revealed by branched tetraether lipids
The Eocene-Oligocene (E-O) boundary interval is considered to be one of the major transitions in Earth's climate, witnessing the first major expansion of the East Antarctic Ice Sheet. However, the extent of the associated climatic cooling, especially for high northern latitude continental landmasses, is poorly constrained. In this study we reconstruct the first mean annual air temperature (MAAT) for the Greenland landmass during the late Eocene and early Oligocene by applying a new proxy based on the distribution of branched tetraether lipids derived from soil bacteria preserved in a marine sediment core from the Greenland Basin. The temperature estimates are compared with a composite continental temperature record based on bio-climatic analysis of pollen assemblages. Both proxies reveal comparable late Eocene MAATs of 13–15 °C and a gradual long-term cooling of 3–5 °C starting near the E-O boundary. These data are in agreement with other MAAT reconstructions from northern midlatitude continents and suggest a general cooling of the Northern Hemisphere during the E-O transition.
branched tetraether lipids, air temperature, eocene, oligocene, greenland
0091-7613
147-150
Schouten, S.
86c33c8e-38d4-432b-b669-e6ae6a7294ea
Eldrett, J.
ac497ad8-cd5f-45f7-9712-3d4f4b24cbb8
Greenwood, D.R.
8f61afc3-d78e-4fa1-948b-5d673806aa50
Harding, I.
5d63b829-a9a7-447f-aa3f-62e8d0e715cb
Baas, M.
49dfd49c-9184-42ec-a475-c24de0c3e0dd
Sinninghe Damste, J.S.
eb3a949c-bdfa-4ef0-af4a-8cd25cc31bf4
Schouten, S.
86c33c8e-38d4-432b-b669-e6ae6a7294ea
Eldrett, J.
ac497ad8-cd5f-45f7-9712-3d4f4b24cbb8
Greenwood, D.R.
8f61afc3-d78e-4fa1-948b-5d673806aa50
Harding, I.
5d63b829-a9a7-447f-aa3f-62e8d0e715cb
Baas, M.
49dfd49c-9184-42ec-a475-c24de0c3e0dd
Sinninghe Damste, J.S.
eb3a949c-bdfa-4ef0-af4a-8cd25cc31bf4

Schouten, S., Eldrett, J., Greenwood, D.R., Harding, I., Baas, M. and Sinninghe Damste, J.S. (2008) Onset of long-term cooling of Greenland near the Eocene-Oligocene boundary as revealed by branched tetraether lipids. Geology, 36 (2), 147-150. (doi:10.1130/G24332A.1).

Record type: Article

Abstract

The Eocene-Oligocene (E-O) boundary interval is considered to be one of the major transitions in Earth's climate, witnessing the first major expansion of the East Antarctic Ice Sheet. However, the extent of the associated climatic cooling, especially for high northern latitude continental landmasses, is poorly constrained. In this study we reconstruct the first mean annual air temperature (MAAT) for the Greenland landmass during the late Eocene and early Oligocene by applying a new proxy based on the distribution of branched tetraether lipids derived from soil bacteria preserved in a marine sediment core from the Greenland Basin. The temperature estimates are compared with a composite continental temperature record based on bio-climatic analysis of pollen assemblages. Both proxies reveal comparable late Eocene MAATs of 13–15 °C and a gradual long-term cooling of 3–5 °C starting near the E-O boundary. These data are in agreement with other MAAT reconstructions from northern midlatitude continents and suggest a general cooling of the Northern Hemisphere during the E-O transition.

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More information

Published date: February 2008
Keywords: branched tetraether lipids, air temperature, eocene, oligocene, greenland
Organisations: Ocean and Earth Science

Identifiers

Local EPrints ID: 50254
URI: http://eprints.soton.ac.uk/id/eprint/50254
ISSN: 0091-7613
PURE UUID: 737da87f-2f14-4e49-a34e-2da98222b3ce
ORCID for I. Harding: ORCID iD orcid.org/0000-0003-4281-0581

Catalogue record

Date deposited: 04 Feb 2008
Last modified: 16 Mar 2024 02:39

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Contributors

Author: S. Schouten
Author: J. Eldrett
Author: D.R. Greenwood
Author: I. Harding ORCID iD
Author: M. Baas
Author: J.S. Sinninghe Damste

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