Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean

Regional air-sea fluxes of anthropogenic CO2 are estimated using a Green's function inversion method that combines data-based estimates of anthropogenic CO2 in the ocean with information about ocean transport and mixing from a suite of Ocean General Circulation Models (OGCMs). In order to quant...

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Published in:Global Biogeochemical Cycles
Other Authors: Fletcher, M. (author), Gruber, N. (author), Jacobson, A. (author), Doney, S. (author), Dutkiewicz, S. (author), Gerber, M. (author), Follows, M. (author), Joos, F. (author), Lindsay, Keith (author), Menemenlis, D. (author), Mouchet, A. (author), Muller, S. (author), Sarmiento, J. (author)
Format: Article in Journal/Newspaper
Language:English
Published: American Geophysical Union 2006
Subjects:
Online Access:http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-004-528
https://doi.org/10.1029/2005GB002530
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spelling ftncar:oai:drupal-site.org:articles_7045 2023-10-01T03:59:35+02:00 Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean Fletcher, M. (author) Gruber, N. (author) Jacobson, A. (author) Doney, S. (author) Dutkiewicz, S. (author) Gerber, M. (author) Follows, M. (author) Joos, F. (author) Lindsay, Keith (author) Menemenlis, D. (author) Mouchet, A. (author) Muller, S. (author) Sarmiento, J. (author) 2006-04-05 application/pdf http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-004-528 https://doi.org/10.1029/2005GB002530 en eng American Geophysical Union Global Biogeochemical Cycles http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-004-528 doi:10.1029/2005GB002530 ark:/85065/d7474b47 Copyright 2006 American Geophysical Union. Text article 2006 ftncar https://doi.org/10.1029/2005GB002530 2023-09-04T18:22:08Z Regional air-sea fluxes of anthropogenic CO2 are estimated using a Green's function inversion method that combines data-based estimates of anthropogenic CO2 in the ocean with information about ocean transport and mixing from a suite of Ocean General Circulation Models (OGCMs). In order to quantify the uncertainty associated with the estimated fluxes owing to modeled transport and errors in the data, we employ 10 OGCMs and three scenarios representing biases in the data-based anthropogenic CO2 estimates. On the basis of the prescribed anthropogenic CO2 storage, we find a global uptake of 2.2 +/- 0.25 Pg C yr(-1), scaled to 1995. This error estimate represents the standard deviation of the models weighted by a CFC-based model skill score, which reduces the error range and emphasizes those models that have been shown to reproduce observed tracer concentrations most accurately. The greatest anthropogenic CO2 uptake occurs in the Southern Ocean and in the tropics. The flux estimates imply vigorous northward transport in the Southern Hemisphere, northward cross-equatorial transport, and equatorward transport at high northern latitudes. Compared with forward simulations, we find substantially more uptake in the Southern Ocean, less uptake in the Pacific Ocean, and less global uptake. The large-scale spatial pattern of the estimated flux is generally insensitive to possible biases in the data and the models employed. However, the global uptake scales approximately linearly with changes in the global anthropogenic CO2 inventory. Considerable uncertainties remain in some regions, particularly the Southern Ocean. Article in Journal/Newspaper Southern Ocean OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research) Pacific Southern Ocean Global Biogeochemical Cycles 20 2 n/a n/a
institution Open Polar
collection OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research)
op_collection_id ftncar
language English
description Regional air-sea fluxes of anthropogenic CO2 are estimated using a Green's function inversion method that combines data-based estimates of anthropogenic CO2 in the ocean with information about ocean transport and mixing from a suite of Ocean General Circulation Models (OGCMs). In order to quantify the uncertainty associated with the estimated fluxes owing to modeled transport and errors in the data, we employ 10 OGCMs and three scenarios representing biases in the data-based anthropogenic CO2 estimates. On the basis of the prescribed anthropogenic CO2 storage, we find a global uptake of 2.2 +/- 0.25 Pg C yr(-1), scaled to 1995. This error estimate represents the standard deviation of the models weighted by a CFC-based model skill score, which reduces the error range and emphasizes those models that have been shown to reproduce observed tracer concentrations most accurately. The greatest anthropogenic CO2 uptake occurs in the Southern Ocean and in the tropics. The flux estimates imply vigorous northward transport in the Southern Hemisphere, northward cross-equatorial transport, and equatorward transport at high northern latitudes. Compared with forward simulations, we find substantially more uptake in the Southern Ocean, less uptake in the Pacific Ocean, and less global uptake. The large-scale spatial pattern of the estimated flux is generally insensitive to possible biases in the data and the models employed. However, the global uptake scales approximately linearly with changes in the global anthropogenic CO2 inventory. Considerable uncertainties remain in some regions, particularly the Southern Ocean.
author2 Fletcher, M. (author)
Gruber, N. (author)
Jacobson, A. (author)
Doney, S. (author)
Dutkiewicz, S. (author)
Gerber, M. (author)
Follows, M. (author)
Joos, F. (author)
Lindsay, Keith (author)
Menemenlis, D. (author)
Mouchet, A. (author)
Muller, S. (author)
Sarmiento, J. (author)
format Article in Journal/Newspaper
title Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean
spellingShingle Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean
title_short Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean
title_full Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean
title_fullStr Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean
title_full_unstemmed Inverse estimates of anthropogenic CO₂ uptake, transport, and storage by the ocean
title_sort inverse estimates of anthropogenic co₂ uptake, transport, and storage by the ocean
publisher American Geophysical Union
publishDate 2006
url http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-004-528
https://doi.org/10.1029/2005GB002530
geographic Pacific
Southern Ocean
geographic_facet Pacific
Southern Ocean
genre Southern Ocean
genre_facet Southern Ocean
op_relation Global Biogeochemical Cycles
http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-004-528
doi:10.1029/2005GB002530
ark:/85065/d7474b47
op_rights Copyright 2006 American Geophysical Union.
op_doi https://doi.org/10.1029/2005GB002530
container_title Global Biogeochemical Cycles
container_volume 20
container_issue 2
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