Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009

A significant portion of the large amount of carbon (C) currently stored in soils of the permafrost region in the Northern Hemisphere has the potential to be emitted as the greenhouse gases CO2 and CH4 under a warmer climate. In this study we evaluated the variability in the sensitivity of permafros...

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Published in:Global Biogeochemical Cycles
Other Authors: McGuire, A. David (author), Koven, Charles (author), Lawrence, David M. (author), Clein, Joy S. (author), Xia, Jiangyang (author), Beer, Christian (author), Burke, Eleanor (author), Chen, Guangsheng (author), Chen, Xiaodong (author), Delire, Christine (author), Jafarov, Elchin (author), MacDougall, Andrew H. (author), Marchenko, Sergey (author), Nicolsky, Dmitry (author), Peng, Shushi (author), Rinke, Annette (author), Saito, Kazuyuki (author), Zhang, Wenxin (author), Alkama, Ramdane (author), Bohn, Theodore J. (author), Ciais, Philippe (author), Decharme, Bertrand (author), Ekici, Altug (author), Gouttevin, Isabelle (author), Hajima, Tomohiro (author), Hayes, Daniel J. (author), Ji, Duoying (author), Krinner, Gerhard (author), Lettenmaier, Dennis P. (author), Luo, Yiqi (author), Miller, Paul A. (author), Moore, John C. (author), Romanovsky, Vladimir (author), Schädel, Christina (author), Schaefer, Kevin (author), Schuur, Edward A.G. (author), Smith, Benjamin (author), Sueyoshi, Tetsuo (author), Zhuang, Qianlai (author)
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:https://doi.org/10.1002/2016GB005405
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spelling ftncar:oai:drupal-site.org:articles_18786 2023-09-05T13:22:25+02:00 Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009 McGuire, A. David (author) Koven, Charles (author) Lawrence, David M. (author) Clein, Joy S. (author) Xia, Jiangyang (author) Beer, Christian (author) Burke, Eleanor (author) Chen, Guangsheng (author) Chen, Xiaodong (author) Delire, Christine (author) Jafarov, Elchin (author) MacDougall, Andrew H. (author) Marchenko, Sergey (author) Nicolsky, Dmitry (author) Peng, Shushi (author) Rinke, Annette (author) Saito, Kazuyuki (author) Zhang, Wenxin (author) Alkama, Ramdane (author) Bohn, Theodore J. (author) Ciais, Philippe (author) Decharme, Bertrand (author) Ekici, Altug (author) Gouttevin, Isabelle (author) Hajima, Tomohiro (author) Hayes, Daniel J. (author) Ji, Duoying (author) Krinner, Gerhard (author) Lettenmaier, Dennis P. (author) Luo, Yiqi (author) Miller, Paul A. (author) Moore, John C. (author) Romanovsky, Vladimir (author) Schädel, Christina (author) Schaefer, Kevin (author) Schuur, Edward A.G. (author) Smith, Benjamin (author) Sueyoshi, Tetsuo (author) Zhuang, Qianlai (author) 2016-07 https://doi.org/10.1002/2016GB005405 en eng Global Biogeochemical Cycles--Global Biogeochem. Cycles--08866236 articles:18786 ark:/85065/d7v69m8d doi:10.1002/2016GB005405 Copyright 2016 American Geophysical Union. article Text 2016 ftncar https://doi.org/10.1002/2016GB005405 2023-08-14T18:43:18Z A significant portion of the large amount of carbon (C) currently stored in soils of the permafrost region in the Northern Hemisphere has the potential to be emitted as the greenhouse gases CO2 and CH4 under a warmer climate. In this study we evaluated the variability in the sensitivity of permafrost and C in recent decades among land surface model simulations over the permafrost region between 1960 and 2009. The 15 model simulations all predict a loss of near-surface permafrost (within 3 m) area over the region, but there are large differences in the magnitude of the simulated rates of loss among the models (0.2 to 58.8 × 103 km2 yr−1). Sensitivity simulations indicated that changes in air temperature largely explained changes in permafrost area, although interactions among changes in other environmental variables also played a role. All of the models indicate that both vegetation and soil C storage together have increased by 156 to 954 Tg C yr−1 between 1960 and 2009 over the permafrost region even though model analyses indicate that warming alone would decrease soil C storage. Increases in gross primary production (GPP) largely explain the simulated increases in vegetation and soil C. The sensitivity of GPP to increases in atmospheric CO2 was the dominant cause of increases in GPP across the models, but comparison of simulated GPP trends across the 1982–2009 period with that of a global GPP data set indicates that all of the models overestimate the trend in GPP. Disturbance also appears to be an important factor affecting C storage, as models that consider disturbance had lower increases in C storage than models that did not consider disturbance. To improve the modeling of C in the permafrost region, there is the need for the modeling community to standardize structural representation of permafrost and carbon dynamics among models that are used to evaluate the permafrost C feedback and for the modeling and observational communities to jointly develop data sets and methodologies to more effectively benchmark ... Article in Journal/Newspaper permafrost OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research) Global Biogeochemical Cycles 30 7 1015 1037
institution Open Polar
collection OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research)
op_collection_id ftncar
language English
description A significant portion of the large amount of carbon (C) currently stored in soils of the permafrost region in the Northern Hemisphere has the potential to be emitted as the greenhouse gases CO2 and CH4 under a warmer climate. In this study we evaluated the variability in the sensitivity of permafrost and C in recent decades among land surface model simulations over the permafrost region between 1960 and 2009. The 15 model simulations all predict a loss of near-surface permafrost (within 3 m) area over the region, but there are large differences in the magnitude of the simulated rates of loss among the models (0.2 to 58.8 × 103 km2 yr−1). Sensitivity simulations indicated that changes in air temperature largely explained changes in permafrost area, although interactions among changes in other environmental variables also played a role. All of the models indicate that both vegetation and soil C storage together have increased by 156 to 954 Tg C yr−1 between 1960 and 2009 over the permafrost region even though model analyses indicate that warming alone would decrease soil C storage. Increases in gross primary production (GPP) largely explain the simulated increases in vegetation and soil C. The sensitivity of GPP to increases in atmospheric CO2 was the dominant cause of increases in GPP across the models, but comparison of simulated GPP trends across the 1982–2009 period with that of a global GPP data set indicates that all of the models overestimate the trend in GPP. Disturbance also appears to be an important factor affecting C storage, as models that consider disturbance had lower increases in C storage than models that did not consider disturbance. To improve the modeling of C in the permafrost region, there is the need for the modeling community to standardize structural representation of permafrost and carbon dynamics among models that are used to evaluate the permafrost C feedback and for the modeling and observational communities to jointly develop data sets and methodologies to more effectively benchmark ...
author2 McGuire, A. David (author)
Koven, Charles (author)
Lawrence, David M. (author)
Clein, Joy S. (author)
Xia, Jiangyang (author)
Beer, Christian (author)
Burke, Eleanor (author)
Chen, Guangsheng (author)
Chen, Xiaodong (author)
Delire, Christine (author)
Jafarov, Elchin (author)
MacDougall, Andrew H. (author)
Marchenko, Sergey (author)
Nicolsky, Dmitry (author)
Peng, Shushi (author)
Rinke, Annette (author)
Saito, Kazuyuki (author)
Zhang, Wenxin (author)
Alkama, Ramdane (author)
Bohn, Theodore J. (author)
Ciais, Philippe (author)
Decharme, Bertrand (author)
Ekici, Altug (author)
Gouttevin, Isabelle (author)
Hajima, Tomohiro (author)
Hayes, Daniel J. (author)
Ji, Duoying (author)
Krinner, Gerhard (author)
Lettenmaier, Dennis P. (author)
Luo, Yiqi (author)
Miller, Paul A. (author)
Moore, John C. (author)
Romanovsky, Vladimir (author)
Schädel, Christina (author)
Schaefer, Kevin (author)
Schuur, Edward A.G. (author)
Smith, Benjamin (author)
Sueyoshi, Tetsuo (author)
Zhuang, Qianlai (author)
format Article in Journal/Newspaper
title Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009
spellingShingle Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009
title_short Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009
title_full Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009
title_fullStr Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009
title_full_unstemmed Variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009
title_sort variability in the sensitivity among model simulations of permafrost and carbon dynamics in the permafrost region between 1960 and 2009
publishDate 2016
url https://doi.org/10.1002/2016GB005405
genre permafrost
genre_facet permafrost
op_relation Global Biogeochemical Cycles--Global Biogeochem. Cycles--08866236
articles:18786
ark:/85065/d7v69m8d
doi:10.1002/2016GB005405
op_rights Copyright 2016 American Geophysical Union.
op_doi https://doi.org/10.1002/2016GB005405
container_title Global Biogeochemical Cycles
container_volume 30
container_issue 7
container_start_page 1015
op_container_end_page 1037
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