A coccolithophore concept for constraining the Cenozoic carbon cycle

An urgent question for future climate, in light of increased burning of fossil fuels, is the temperature sensitivity of the climate system to atmospheric carbon dioxide (pCO2). To date, no direct proxy for past levels of pCO2 exists beyond the reach of the polar ice core records. We propose a new me...

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Main Authors: Henderiks, J, Rickaby, R
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:https://ora.ox.ac.uk/objects/uuid:3739239e-b31c-4af1-bf59-a5f0584d5722
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spelling ftuloxford:oai:ora.ox.ac.uk:uuid:3739239e-b31c-4af1-bf59-a5f0584d5722 2024-09-30T14:36:31+00:00 A coccolithophore concept for constraining the Cenozoic carbon cycle Henderiks, J Rickaby, R 2016-07-28 https://ora.ox.ac.uk/objects/uuid:3739239e-b31c-4af1-bf59-a5f0584d5722 eng eng https://ora.ox.ac.uk/objects/uuid:3739239e-b31c-4af1-bf59-a5f0584d5722 info:eu-repo/semantics/embargoedAccess Journal article 2016 ftuloxford 2024-09-06T07:47:31Z An urgent question for future climate, in light of increased burning of fossil fuels, is the temperature sensitivity of the climate system to atmospheric carbon dioxide (pCO2). To date, no direct proxy for past levels of pCO2 exists beyond the reach of the polar ice core records. We propose a new methodology for placing a constraint on pCO2 over the Cenozoic based on the physiological plasticity of extant coccolithophores. Specifically, our premise is that the contrasting calcification tolerance1 of various extant species of coccolithophore to raised pCO2 reflects an "evolutionary memory" of past atmospheric composition. The different times of evolution of certain morphospecies allows an upper constraint of past pCO2 to be placed on Cenozoic timeslices. Further, our hypothesis has implications for the response of marine calcifiers to ocean acidification. Geologically "ancient" species, which have survived large changes in ocean chemistry, are likely more resilient to predicted acidification. Article in Journal/Newspaper ice core Ocean acidification ORA - Oxford University Research Archive
institution Open Polar
collection ORA - Oxford University Research Archive
op_collection_id ftuloxford
language English
description An urgent question for future climate, in light of increased burning of fossil fuels, is the temperature sensitivity of the climate system to atmospheric carbon dioxide (pCO2). To date, no direct proxy for past levels of pCO2 exists beyond the reach of the polar ice core records. We propose a new methodology for placing a constraint on pCO2 over the Cenozoic based on the physiological plasticity of extant coccolithophores. Specifically, our premise is that the contrasting calcification tolerance1 of various extant species of coccolithophore to raised pCO2 reflects an "evolutionary memory" of past atmospheric composition. The different times of evolution of certain morphospecies allows an upper constraint of past pCO2 to be placed on Cenozoic timeslices. Further, our hypothesis has implications for the response of marine calcifiers to ocean acidification. Geologically "ancient" species, which have survived large changes in ocean chemistry, are likely more resilient to predicted acidification.
format Article in Journal/Newspaper
author Henderiks, J
Rickaby, R
spellingShingle Henderiks, J
Rickaby, R
A coccolithophore concept for constraining the Cenozoic carbon cycle
author_facet Henderiks, J
Rickaby, R
author_sort Henderiks, J
title A coccolithophore concept for constraining the Cenozoic carbon cycle
title_short A coccolithophore concept for constraining the Cenozoic carbon cycle
title_full A coccolithophore concept for constraining the Cenozoic carbon cycle
title_fullStr A coccolithophore concept for constraining the Cenozoic carbon cycle
title_full_unstemmed A coccolithophore concept for constraining the Cenozoic carbon cycle
title_sort coccolithophore concept for constraining the cenozoic carbon cycle
publishDate 2016
url https://ora.ox.ac.uk/objects/uuid:3739239e-b31c-4af1-bf59-a5f0584d5722
genre ice core
Ocean acidification
genre_facet ice core
Ocean acidification
op_relation https://ora.ox.ac.uk/objects/uuid:3739239e-b31c-4af1-bf59-a5f0584d5722
op_rights info:eu-repo/semantics/embargoedAccess
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