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Phanerozoic icehouse climates as the result of multiple solid-Earth cooling mechanisms

Phanerozoic icehouse climates as the result of multiple solid-Earth cooling mechanisms
Phanerozoic icehouse climates as the result of multiple solid-Earth cooling mechanisms
The Phanerozoic climate has been interrupted by two long “icehouse” intervals, including the current icehouse of the last ~34 million years. While these cool intervals correspond to lower atmospheric CO2, it is unclear why CO2 levels fell, with hypotheses suggesting changes in CO2 degassing rates or modification of silicate weathering through changing continental lithology or paleogeography. Here, we construct an Earth System Model that integrates these proposed cooling mechanisms in detail. The model can reproduce the broad geologic record of ice cap expansion, allowing us to infer the primary drivers of long-term climate change. Our results indicate that recent icehouse climates required a combination of different cooling mechanisms acting simultaneously and were not driven by a single known process, potentially explaining why icehouses have been rarer than greenhouses over Earth history.
2375-2548
Merdith, Andrew S.
ee6639e1-f988-41bf-9638-31e1a8ef9662
Gernon, Thomas M.
658041a0-fdd1-4516-85f4-98895a39235e
Maffre, Pierre
d12ac152-6724-4f23-af70-b89c3e1e6521
Donnadieu, Yannick
e1c60062-d480-4c86-afc4-f405903e4b22
Goddéris, Yves
7204dfd0-88f2-414b-935b-203349bab084
Longman, Jack
1b48c8f4-83b6-4762-988a-7176b5de3640
Müller, R. Dietmar
60e33f50-cf12-44d3-beaa-350f4775f2f2
Mills, Benjamin J.W.
c08143b8-4671-4c62-974e-64be9ef8bc78
Merdith, Andrew S.
ee6639e1-f988-41bf-9638-31e1a8ef9662
Gernon, Thomas M.
658041a0-fdd1-4516-85f4-98895a39235e
Maffre, Pierre
d12ac152-6724-4f23-af70-b89c3e1e6521
Donnadieu, Yannick
e1c60062-d480-4c86-afc4-f405903e4b22
Goddéris, Yves
7204dfd0-88f2-414b-935b-203349bab084
Longman, Jack
1b48c8f4-83b6-4762-988a-7176b5de3640
Müller, R. Dietmar
60e33f50-cf12-44d3-beaa-350f4775f2f2
Mills, Benjamin J.W.
c08143b8-4671-4c62-974e-64be9ef8bc78

Merdith, Andrew S., Gernon, Thomas M., Maffre, Pierre, Donnadieu, Yannick, Goddéris, Yves, Longman, Jack, Müller, R. Dietmar and Mills, Benjamin J.W. (2025) Phanerozoic icehouse climates as the result of multiple solid-Earth cooling mechanisms. Science Advances, 11 (7), [eadm9798]. (doi:10.1126/sciadv.adm9798).

Record type: Article

Abstract

The Phanerozoic climate has been interrupted by two long “icehouse” intervals, including the current icehouse of the last ~34 million years. While these cool intervals correspond to lower atmospheric CO2, it is unclear why CO2 levels fell, with hypotheses suggesting changes in CO2 degassing rates or modification of silicate weathering through changing continental lithology or paleogeography. Here, we construct an Earth System Model that integrates these proposed cooling mechanisms in detail. The model can reproduce the broad geologic record of ice cap expansion, allowing us to infer the primary drivers of long-term climate change. Our results indicate that recent icehouse climates required a combination of different cooling mechanisms acting simultaneously and were not driven by a single known process, potentially explaining why icehouses have been rarer than greenhouses over Earth history.

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More information

Accepted/In Press date: 14 January 2025
e-pub ahead of print date: 14 February 2025
Published date: 14 February 2025
Additional Information: For the purpose of open access, the authors have applied a creative commons attribution (CC BY) licence to any author accepted manuscript version arising.

Identifiers

Local EPrints ID: 498440
URI: http://eprints.soton.ac.uk/id/eprint/498440
ISSN: 2375-2548
PURE UUID: 522ae989-86cd-4cc5-bd09-af367722d484
ORCID for Thomas M. Gernon: ORCID iD orcid.org/0000-0002-7717-2092

Catalogue record

Date deposited: 18 Feb 2025 17:54
Last modified: 22 Aug 2025 02:02

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Contributors

Author: Andrew S. Merdith
Author: Pierre Maffre
Author: Yannick Donnadieu
Author: Yves Goddéris
Author: Jack Longman
Author: R. Dietmar Müller
Author: Benjamin J.W. Mills

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