A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard

Recent climate change predictions suggest altered patterns of winter precipitation across the Arctic. It has been suggested that the presence, timing and quantity of snow all affect microbial activity, thus influencing CO2 production in soil. In this study annual and seasonal emissions of CO2 were e...

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Published in:Polar Research
Main Authors: Björkman, Mats P., Morgner, Elke, Björk, Robert G., Cooper, Elisabet J., Elberling, Bo, Klemedtsson, Leif
Format: Article in Journal/Newspaper
Language:English
Published: 2010
Subjects:
Online Access:https://curis.ku.dk/portal/da/publications/a-comparison-of-annual-and-seasonal-carbon-dioxide-effluxes-between-subarctic-sweden-and-higharctic-svalbard(7c148250-e1c5-11df-b6d2-000ea68e967b).html
https://doi.org/10.1111/j.1751-8369.2010.00150.x
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spelling ftcopenhagenunip:oai:pure.atira.dk:publications/7c148250-e1c5-11df-b6d2-000ea68e967b 2023-12-10T09:39:04+01:00 A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard Björkman, Mats P. Morgner, Elke Björk, Robert G. Cooper, Elisabet J. Elberling, Bo Klemedtsson, Leif 2010 https://curis.ku.dk/portal/da/publications/a-comparison-of-annual-and-seasonal-carbon-dioxide-effluxes-between-subarctic-sweden-and-higharctic-svalbard(7c148250-e1c5-11df-b6d2-000ea68e967b).html https://doi.org/10.1111/j.1751-8369.2010.00150.x eng eng info:eu-repo/semantics/restrictedAccess Björkman , M P , Morgner , E , Björk , R G , Cooper , E J , Elberling , B & Klemedtsson , L 2010 , ' A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard ' , Polar Research , vol. 29 , no. 1 , pp. 75–84 . https://doi.org/10.1111/j.1751-8369.2010.00150.x article 2010 ftcopenhagenunip https://doi.org/10.1111/j.1751-8369.2010.00150.x 2023-11-15T23:58:39Z Recent climate change predictions suggest altered patterns of winter precipitation across the Arctic. It has been suggested that the presence, timing and quantity of snow all affect microbial activity, thus influencing CO2 production in soil. In this study annual and seasonal emissions of CO2 were estimated in High-Arctic Adventdalen, Svalbard, and sub-Arctic Latnjajaure, Sweden, using a new trace gas-based method to track real-time diffusion rates through the snow. Summer measurements from snow-free soils were made using a chamber-based method. Measurements were obtained from different snow regimes in order to evaluate the effect of snow depth on winter CO2 effluxes. Total annual emissions of CO2 from the sub-Arctic site (0.662–1.487 kg CO2 m–2 yr–1) were found to be more than double the emissions from the High-Arctic site (0.369–0.591 kg CO2 m–2 yr–1). There were no significant differences in winter effluxes between snow regimes or vegetation types, indicating that spatial variability in winter soil CO2 effluxes are not directly linked to snow cover thickness or soil temperatures. Total winter emissions (0.004– 0.248 kg CO2 m–2) were found to be in the lower range of those previously described in the literature. Winter emissions varied in their contribution to total annual production between 1 and 18%. Artificial snow drifts shortened the snow-free period by 2 weeks and decreased the annual CO2 emission by up to 20%. This study suggests that future shifts in vegetation zones may increase soil respiration from Arctic tundra regions Article in Journal/Newspaper Adventdalen Arctic Arctic Climate change Polar Research Subarctic Svalbard Tundra University of Copenhagen: Research Adventdalen ENVELOPE(16.264,16.264,78.181,78.181) Arctic Latnjajaure ENVELOPE(18.485,18.485,68.359,68.359) Svalbard Polar Research 29 1 75 84
institution Open Polar
collection University of Copenhagen: Research
op_collection_id ftcopenhagenunip
language English
description Recent climate change predictions suggest altered patterns of winter precipitation across the Arctic. It has been suggested that the presence, timing and quantity of snow all affect microbial activity, thus influencing CO2 production in soil. In this study annual and seasonal emissions of CO2 were estimated in High-Arctic Adventdalen, Svalbard, and sub-Arctic Latnjajaure, Sweden, using a new trace gas-based method to track real-time diffusion rates through the snow. Summer measurements from snow-free soils were made using a chamber-based method. Measurements were obtained from different snow regimes in order to evaluate the effect of snow depth on winter CO2 effluxes. Total annual emissions of CO2 from the sub-Arctic site (0.662–1.487 kg CO2 m–2 yr–1) were found to be more than double the emissions from the High-Arctic site (0.369–0.591 kg CO2 m–2 yr–1). There were no significant differences in winter effluxes between snow regimes or vegetation types, indicating that spatial variability in winter soil CO2 effluxes are not directly linked to snow cover thickness or soil temperatures. Total winter emissions (0.004– 0.248 kg CO2 m–2) were found to be in the lower range of those previously described in the literature. Winter emissions varied in their contribution to total annual production between 1 and 18%. Artificial snow drifts shortened the snow-free period by 2 weeks and decreased the annual CO2 emission by up to 20%. This study suggests that future shifts in vegetation zones may increase soil respiration from Arctic tundra regions
format Article in Journal/Newspaper
author Björkman, Mats P.
Morgner, Elke
Björk, Robert G.
Cooper, Elisabet J.
Elberling, Bo
Klemedtsson, Leif
spellingShingle Björkman, Mats P.
Morgner, Elke
Björk, Robert G.
Cooper, Elisabet J.
Elberling, Bo
Klemedtsson, Leif
A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard
author_facet Björkman, Mats P.
Morgner, Elke
Björk, Robert G.
Cooper, Elisabet J.
Elberling, Bo
Klemedtsson, Leif
author_sort Björkman, Mats P.
title A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard
title_short A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard
title_full A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard
title_fullStr A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard
title_full_unstemmed A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard
title_sort comparison of annual and seasonal carbon dioxide effluxes between subarctic sweden and high-arctic svalbard
publishDate 2010
url https://curis.ku.dk/portal/da/publications/a-comparison-of-annual-and-seasonal-carbon-dioxide-effluxes-between-subarctic-sweden-and-higharctic-svalbard(7c148250-e1c5-11df-b6d2-000ea68e967b).html
https://doi.org/10.1111/j.1751-8369.2010.00150.x
long_lat ENVELOPE(16.264,16.264,78.181,78.181)
ENVELOPE(18.485,18.485,68.359,68.359)
geographic Adventdalen
Arctic
Latnjajaure
Svalbard
geographic_facet Adventdalen
Arctic
Latnjajaure
Svalbard
genre Adventdalen
Arctic
Arctic
Climate change
Polar Research
Subarctic
Svalbard
Tundra
genre_facet Adventdalen
Arctic
Arctic
Climate change
Polar Research
Subarctic
Svalbard
Tundra
op_source Björkman , M P , Morgner , E , Björk , R G , Cooper , E J , Elberling , B & Klemedtsson , L 2010 , ' A comparison of annual and seasonal carbon dioxide effluxes between subarctic Sweden and high-arctic Svalbard ' , Polar Research , vol. 29 , no. 1 , pp. 75–84 . https://doi.org/10.1111/j.1751-8369.2010.00150.x
op_rights info:eu-repo/semantics/restrictedAccess
op_doi https://doi.org/10.1111/j.1751-8369.2010.00150.x
container_title Polar Research
container_volume 29
container_issue 1
container_start_page 75
op_container_end_page 84
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