The net ecosystem CO2 exchange is the result of the imbalance between the assimilation process (gross primary production, GPP) and ecosystem respiration (RE). The aim of this study was to investigate temperature sensitivities of these processes and the effect of climate warming on the annual terrestrial net ecosystem CO2 exchange globally in the boreal and temperate regions. A database of 403 site-years of ecosystem flux data at 101 sites in the world was collected and analyzed. Temperature sensitivities of rates of RE and GPP were quantified with Q10, defined as the increase of RE (or GPP) rates with a temperature rise of 10 °C. Results showed that on the annual time scale, the intrinsic temperature sensitivity of GPP (Q10sG ) was higher t...
In this study, we use net ecosystem productivity (NEP) measurement data across several forest sites ...
Terrestrial ecosystems sequester 2.1 Pg of atmospheric carbon annually. A large amount of the terres...
Differences in the seasonal pattern of assimilatory and respiratory processes are responsible for di...
The net ecosystem CO2 exchange is the result of the imbalance between the assimilation process (gros...
The net ecosystem CO2 exchange is the result of the imbalance between the assimilation process (gros...
Abstract. Winter CO2 fluxes represent an important component of the annual carbon budget in northern...
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 carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
An improvement in our process-based understanding of carbon (C) exchange in the Arctic and its clima...
An improvement in our process-based understanding of carbon (C) exchange in the Arctic and its clima...
In this study, we use net ecosystem productivity (NEP) measurement data across several forest sites ...
Terrestrial ecosystems sequester 2.1 Pg of atmospheric carbon annually. A large amount of the terres...
Differences in the seasonal pattern of assimilatory and respiratory processes are responsible for di...
The net ecosystem CO2 exchange is the result of the imbalance between the assimilation process (gros...
The net ecosystem CO2 exchange is the result of the imbalance between the assimilation process (gros...
Abstract. Winter CO2 fluxes represent an important component of the annual carbon budget in northern...
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 carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
An improvement in our process-based understanding of carbon (C) exchange in the Arctic and its clima...
An improvement in our process-based understanding of carbon (C) exchange in the Arctic and its clima...
In this study, we use net ecosystem productivity (NEP) measurement data across several forest sites ...
Terrestrial ecosystems sequester 2.1 Pg of atmospheric carbon annually. A large amount of the terres...
Differences in the seasonal pattern of assimilatory and respiratory processes are responsible for di...