Part of the Northern Hemisphere has experienced widespread autumn cooling during the most recent decades despite overall warming, but how this contrasting temperature change has influenced the ecosystem carbon exchange remains unclear. Here, we show that autumn cooling has occurred over about half of the area north of 25° N since 2004, producing a weak cooling trend over the period 2004–2018. Multiple lines of evidence suggest an increasing net CO2 release in autumn during 2004–2018. In cooling areas, the increasing autumn CO2 release is due to the larger decrease of gross primary productivity (GPP) growth than total ecosystem respiration (TER) growth suppressed by cooling. In the warming areas, TER increased more than GPP because the warmi...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
An ecosystem model, ecosys, has been used to examine the effects of recent warming on carbon exchang...
The enhanced vegetation growth by climate warming plays a pivotal role in amplifying the seasonal cy...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
The CO2 seasonal cycle amplitude (SCA) in the Northern Hemisphere has increased since the 1960sa fea...
Feedbacks from the carbon cycle in boreal and arctic ecosystems can significantly affect climate cha...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
An ecosystem model, ecosys, has been used to examine the effects of recent warming on carbon exchang...
The enhanced vegetation growth by climate warming plays a pivotal role in amplifying the seasonal cy...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
The CO2 seasonal cycle amplitude (SCA) in the Northern Hemisphere has increased since the 1960sa fea...
Feedbacks from the carbon cycle in boreal and arctic ecosystems can significantly affect climate cha...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
An ecosystem model, ecosys, has been used to examine the effects of recent warming on carbon exchang...
The enhanced vegetation growth by climate warming plays a pivotal role in amplifying the seasonal cy...