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Longer growing seasons do not increase net carbon uptake in the northeastern Siberian tundra
by
van der Molen, M. K.
, Suzdalov, D. A.
, Dolman, A. J.
, Maximov, T. C.
, Kononov, A. V.
, van Huissteden, J.
, Karsanaev, S. A.
, Parmentier, F. J. W.
in
Carbon
/ Carbon cycle
/ Climate change
/ Ecosystems
/ Geobiology
/ Global warming
/ GPP
/ Greenhouse gases
/ Growing season
/ net carbon exchange
/ photosynthesis
/ Primary production
/ respiration
/ Snowmelt
/ Tundra
2011
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Longer growing seasons do not increase net carbon uptake in the northeastern Siberian tundra
by
van der Molen, M. K.
, Suzdalov, D. A.
, Dolman, A. J.
, Maximov, T. C.
, Kononov, A. V.
, van Huissteden, J.
, Karsanaev, S. A.
, Parmentier, F. J. W.
in
Carbon
/ Carbon cycle
/ Climate change
/ Ecosystems
/ Geobiology
/ Global warming
/ GPP
/ Greenhouse gases
/ Growing season
/ net carbon exchange
/ photosynthesis
/ Primary production
/ respiration
/ Snowmelt
/ Tundra
2011
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Longer growing seasons do not increase net carbon uptake in the northeastern Siberian tundra
by
van der Molen, M. K.
, Suzdalov, D. A.
, Dolman, A. J.
, Maximov, T. C.
, Kononov, A. V.
, van Huissteden, J.
, Karsanaev, S. A.
, Parmentier, F. J. W.
in
Carbon
/ Carbon cycle
/ Climate change
/ Ecosystems
/ Geobiology
/ Global warming
/ GPP
/ Greenhouse gases
/ Growing season
/ net carbon exchange
/ photosynthesis
/ Primary production
/ respiration
/ Snowmelt
/ Tundra
2011
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Longer growing seasons do not increase net carbon uptake in the northeastern Siberian tundra
Journal Article
Longer growing seasons do not increase net carbon uptake in the northeastern Siberian tundra
2011
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Overview
With global warming, snowmelt is occurring earlier and growing seasons are becoming longer around the Arctic. It has been suggested that this would lead to more uptake of carbon due to a lengthening of the period in which plants photosynthesize. To investigate this suggestion, 8 consecutive years of eddy covariance measurements at a northeastern Siberian graminoid tundra site were investigated for patterns in net ecosystem exchange, gross primary production (GPP) and ecosystem respiration (Reco). While GPP showed no clear increase with longer growing seasons, it was significantly increased in warmer summers. Due to these warmer temperatures however, the increase in uptake was mostly offset by an increase in Reco. Therefore, overall variability in net carbon uptake was low, and no relationship with growing season length was found. Furthermore, the highest net uptake of carbon occurred with the shortest and the coldest growing season. Low uptake of carbon mostly occurred with longer or warmer growing seasons. We thus conclude that the net carbon uptake of this ecosystem is more likely to decrease rather than to increase under a warmer climate. These results contradict previous research that has showed more net carbon uptake with longer growing seasons. We hypothesize that this difference is due to site‐specific differences, such as climate type and soil, and that changes in the carbon cycle with longer growing seasons will not be uniform around the Arctic. Key Points Longer growing seasons do not increase net carbon uptake Highest uptake occurs in cold or short growing seasons Greenhouse gas function of this tundra ecosystem is likely to diminish
Publisher
Blackwell Publishing Ltd
Subject
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