International audienceWarming of northern high latitude regions (NHL, > 50 °N) has increased both photosynthesis and respiration which results in considerable uncertainty regarding the net carbon dioxide (CO2) balance of NHL ecosystems. Using estimates constrained from atmospheric observations from 1980 to 2017, we find that the increasing trends of net CO2 uptake in the early-growing season are of similar magnitude across the tree cover gradient in the NHL. However, the trend of respiratory CO2 loss during late-growing season increases significantly with increasing tree cover, offsetting a larger fraction of photosynthetic CO2 uptake, and thus resulting in a slower rate of increasing annual net CO2 uptake in areas with higher tree cover, e...
International audienceCarbon balance of terrestrial ecosystems in the northern high latitudes (NHL) ...
Carbon balance of terrestrial ecosystems in the northern high latitudes (NHL) is sensitive to climat...
International audienceThe amplitude of the atmospheric CO2 seasonal cycle has increased by 30 to 50%...
International audienceWarming of northern high latitude regions (NHL, > 50 °N) has increased both ph...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
Warmer temperatures and elevated atmospheric CO2 concentrations over the last several decades have b...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
We report changes in the seasonal cycle of atmospheric CO2 at high northern latitudes from 1980 to 1...
International audienceCarbon balance of terrestrial ecosystems in the northern high latitudes (NHL) ...
Carbon balance of terrestrial ecosystems in the northern high latitudes (NHL) is sensitive to climat...
International audienceThe amplitude of the atmospheric CO2 seasonal cycle has increased by 30 to 50%...
International audienceWarming of northern high latitude regions (NHL, > 50 °N) has increased both ph...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
Warmer temperatures and elevated atmospheric CO2 concentrations over the last several decades have b...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
We report changes in the seasonal cycle of atmospheric CO2 at high northern latitudes from 1980 to 1...
International audienceCarbon balance of terrestrial ecosystems in the northern high latitudes (NHL) ...
Carbon balance of terrestrial ecosystems in the northern high latitudes (NHL) is sensitive to climat...
International audienceThe amplitude of the atmospheric CO2 seasonal cycle has increased by 30 to 50%...