Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas

International audience Over the past decade, estimates of the atmospheric CO2 uptake by continental shelf seas were constrained within the 0.18–0.45 Pg C yr−1 range. However, most of those estimates are based on extrapolations from limited data sets of local flux measurements (n < 100). Here we p...

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Published in:Global Biogeochemical Cycles
Main Authors: Laruelle, Goulven, G, Lauerwald, Ronny, Pfeil, Benjamin, Regnier, Pierre
Other Authors: Université libre de Bruxelles (ULB), Universiteit Utrecht / Utrecht University Utrecht, Institut Pierre-Simon-Laplace (IPSL (FR_636)), École normale supérieure - Paris (ENS-PSL), Université Paris Sciences et Lettres (PSL)-Université Paris Sciences et Lettres (PSL)-Université de Versailles Saint-Quentin-en-Yvelines (UVSQ)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut national des sciences de l'Univers (INSU - CNRS)-École polytechnique (X), Institut Polytechnique de Paris (IP Paris)-Institut Polytechnique de Paris (IP Paris)-Centre National d'Études Spatiales Toulouse (CNES)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité), University of Bergen (UiB)
Format: Article in Journal/Newspaper
Language:English
Published: HAL CCSD 2014
Subjects:
Online Access:https://hal.science/hal-04686915
https://hal.science/hal-04686915/document
https://hal.science/hal-04686915/file/Global%20Biogeochemical%20Cycles%20-%202014%20-%20Laruelle%20-%20Regionalized%20global%20budget%20of%20the%20CO2%20exchange%20at%20the%20air%E2%80%90water%20interface.pdf
https://doi.org/10.1002/2014gb004832
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spelling ftepunivpsaclay:oai:HAL:hal-04686915v1 2024-09-30T14:31:42+00:00 Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas Laruelle, Goulven, G Lauerwald, Ronny Pfeil, Benjamin Regnier, Pierre Université libre de Bruxelles (ULB) Universiteit Utrecht / Utrecht University Utrecht Institut Pierre-Simon-Laplace (IPSL (FR_636)) École normale supérieure - Paris (ENS-PSL) Université Paris Sciences et Lettres (PSL)-Université Paris Sciences et Lettres (PSL)-Université de Versailles Saint-Quentin-en-Yvelines (UVSQ)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut national des sciences de l'Univers (INSU - CNRS)-École polytechnique (X) Institut Polytechnique de Paris (IP Paris)-Institut Polytechnique de Paris (IP Paris)-Centre National d'Études Spatiales Toulouse (CNES)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité) University of Bergen (UiB) 2014-11 https://hal.science/hal-04686915 https://hal.science/hal-04686915/document https://hal.science/hal-04686915/file/Global%20Biogeochemical%20Cycles%20-%202014%20-%20Laruelle%20-%20Regionalized%20global%20budget%20of%20the%20CO2%20exchange%20at%20the%20air%E2%80%90water%20interface.pdf https://doi.org/10.1002/2014gb004832 en eng HAL CCSD American Geophysical Union info:eu-repo/semantics/altIdentifier/doi/10.1002/2014gb004832 hal-04686915 https://hal.science/hal-04686915 https://hal.science/hal-04686915/document https://hal.science/hal-04686915/file/Global%20Biogeochemical%20Cycles%20-%202014%20-%20Laruelle%20-%20Regionalized%20global%20budget%20of%20the%20CO2%20exchange%20at%20the%20air%E2%80%90water%20interface.pdf doi:10.1002/2014gb004832 info:eu-repo/semantics/OpenAccess ISSN: 0886-6236 EISSN: 1944-8224 Global Biogeochemical Cycles https://hal.science/hal-04686915 Global Biogeochemical Cycles, 2014, 28, pp.1199 - 1214. &#x27E8;10.1002/2014gb004832&#x27E9; [SDE]Environmental Sciences info:eu-repo/semantics/article Journal articles 2014 ftepunivpsaclay https://doi.org/10.1002/2014gb004832 2024-09-12T23:50:32Z International audience Over the past decade, estimates of the atmospheric CO2 uptake by continental shelf seas were constrained within the 0.18–0.45 Pg C yr−1 range. However, most of those estimates are based on extrapolations from limited data sets of local flux measurements (n < 100). Here we propose to derive the CO2 air-sea exchange of the shelf seas by extracting 3 · 106 direct surface ocean CO2 measurements from the global database SOCAT (Surface Ocean CO2 Atlas), atmospheric CO2 values from GlobalVIEW and calculating gas transfer rates using readily available global temperature, salinity, and wind speed fields. We then aggregate our results using a global segmentation of the shelf in 45 units and 152 subunits to establish a consistent regionalized CO2 exchange budget at the global scale. Within each unit, the data density determines the spatial and temporal resolutions at which the air-sea CO2 fluxes are calculated and range from a 0.5° resolution in the best surveyed regions to a whole unit resolution in areas where data coverage is limited. Our approach also accounts, for the first time, for the partial sea ice cover of polar shelves. Our new regionalized global CO2 sink estimate of 0.19 ± 0.05 Pg C yr−1 falls in the low end of previous estimates. Reported to an ice-free surface area of 22 · 106 km2, this value yields a flux density of 0.7 mol C m−2 yr−1, ~40% more intense than that of the open ocean. Our results also highlight the significant contribution of Arctic shelves to this global CO2 uptake (0.07 Pg C yr−1). Article in Journal/Newspaper Arctic Sea ice École Polytechnique, Université Paris-Saclay: HAL Arctic Global Biogeochemical Cycles 28 11 1199 1214
institution Open Polar
collection École Polytechnique, Université Paris-Saclay: HAL
op_collection_id ftepunivpsaclay
language English
topic [SDE]Environmental Sciences
spellingShingle [SDE]Environmental Sciences
Laruelle, Goulven, G
Lauerwald, Ronny
Pfeil, Benjamin
Regnier, Pierre
Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas
topic_facet [SDE]Environmental Sciences
description International audience Over the past decade, estimates of the atmospheric CO2 uptake by continental shelf seas were constrained within the 0.18–0.45 Pg C yr−1 range. However, most of those estimates are based on extrapolations from limited data sets of local flux measurements (n < 100). Here we propose to derive the CO2 air-sea exchange of the shelf seas by extracting 3 · 106 direct surface ocean CO2 measurements from the global database SOCAT (Surface Ocean CO2 Atlas), atmospheric CO2 values from GlobalVIEW and calculating gas transfer rates using readily available global temperature, salinity, and wind speed fields. We then aggregate our results using a global segmentation of the shelf in 45 units and 152 subunits to establish a consistent regionalized CO2 exchange budget at the global scale. Within each unit, the data density determines the spatial and temporal resolutions at which the air-sea CO2 fluxes are calculated and range from a 0.5° resolution in the best surveyed regions to a whole unit resolution in areas where data coverage is limited. Our approach also accounts, for the first time, for the partial sea ice cover of polar shelves. Our new regionalized global CO2 sink estimate of 0.19 ± 0.05 Pg C yr−1 falls in the low end of previous estimates. Reported to an ice-free surface area of 22 · 106 km2, this value yields a flux density of 0.7 mol C m−2 yr−1, ~40% more intense than that of the open ocean. Our results also highlight the significant contribution of Arctic shelves to this global CO2 uptake (0.07 Pg C yr−1).
author2 Université libre de Bruxelles (ULB)
Universiteit Utrecht / Utrecht University Utrecht
Institut Pierre-Simon-Laplace (IPSL (FR_636))
École normale supérieure - Paris (ENS-PSL)
Université Paris Sciences et Lettres (PSL)-Université Paris Sciences et Lettres (PSL)-Université de Versailles Saint-Quentin-en-Yvelines (UVSQ)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut national des sciences de l'Univers (INSU - CNRS)-École polytechnique (X)
Institut Polytechnique de Paris (IP Paris)-Institut Polytechnique de Paris (IP Paris)-Centre National d'Études Spatiales Toulouse (CNES)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité)
University of Bergen (UiB)
format Article in Journal/Newspaper
author Laruelle, Goulven, G
Lauerwald, Ronny
Pfeil, Benjamin
Regnier, Pierre
author_facet Laruelle, Goulven, G
Lauerwald, Ronny
Pfeil, Benjamin
Regnier, Pierre
author_sort Laruelle, Goulven, G
title Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas
title_short Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas
title_full Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas
title_fullStr Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas
title_full_unstemmed Regionalized global budget of the CO 2 exchange at the air‐water interface in continental shelf seas
title_sort regionalized global budget of the co 2 exchange at the air‐water interface in continental shelf seas
publisher HAL CCSD
publishDate 2014
url https://hal.science/hal-04686915
https://hal.science/hal-04686915/document
https://hal.science/hal-04686915/file/Global%20Biogeochemical%20Cycles%20-%202014%20-%20Laruelle%20-%20Regionalized%20global%20budget%20of%20the%20CO2%20exchange%20at%20the%20air%E2%80%90water%20interface.pdf
https://doi.org/10.1002/2014gb004832
geographic Arctic
geographic_facet Arctic
genre Arctic
Sea ice
genre_facet Arctic
Sea ice
op_source ISSN: 0886-6236
EISSN: 1944-8224
Global Biogeochemical Cycles
https://hal.science/hal-04686915
Global Biogeochemical Cycles, 2014, 28, pp.1199 - 1214. &#x27E8;10.1002/2014gb004832&#x27E9;
op_relation info:eu-repo/semantics/altIdentifier/doi/10.1002/2014gb004832
hal-04686915
https://hal.science/hal-04686915
https://hal.science/hal-04686915/document
https://hal.science/hal-04686915/file/Global%20Biogeochemical%20Cycles%20-%202014%20-%20Laruelle%20-%20Regionalized%20global%20budget%20of%20the%20CO2%20exchange%20at%20the%20air%E2%80%90water%20interface.pdf
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