We modelled the effects of past and expected future changes in climate (temperature, precipitation), CO2 concentration, nitrogen deposition (N) and ozone (O3) exposure (phytotoxic ozone dose, POD) on carbon (C) sequestration by European forest ecosystems for the period 1900–2050. Tree C sequestration was assessed by using empirical response functions, while soil C sequestration was simulated with the process-based model VSD, combined with the RothC model. We evaluated two empirical growth responses to N deposition (linear and non-linear) and two O3 exposure relationships (linear function with total biomass or net annual increment). We further investigated an ‘interactive model’ with interactions between drivers and a ‘multiplicative model’,...
In the climate change discussion, the possibility of carbon sequestration of forests plays an import...
Carbon sequestration by terrestrial vegetation is important for the budget of greenhouse gas (GHG) f...
International audienceAtmospheric N deposition is known to severely impact forest ecosystem function...
We modelled the effects of past and expected future changes in climate (temperature, precipitation),...
We modelled the effects of past and expected future changes in climate (temperature, precipitation),...
Changes in the Earth’s atmosphere are expected to influence the growth, and therefore, carbon accumu...
We modelled the combined effects of past and expected future changes in climate and nitrogen deposit...
We modelled the combined effects of past and expected future changes in climate and nitrogen deposit...
An estimate of net carbon (C) pool changes and long-term C sequestration in trees and soils was made...
Important forest ecosystem services are pollutant filtering relevant for an adequate water quality (...
Forests are important components of the greenhouse gas balance of Europe. There is considerable unc...
The process based model SMART–SUMO–WATBAL was applied to 166 intensive monitoring forest plots of mi...
Temperate forests are affected by a wide variety of environmental factors that stem from human indus...
Forests are important components of the greenhouse gas balance of Europe. There is considerable unce...
In the climate change discussion, the possibility of carbon sequestration of forests plays an import...
Carbon sequestration by terrestrial vegetation is important for the budget of greenhouse gas (GHG) f...
International audienceAtmospheric N deposition is known to severely impact forest ecosystem function...
We modelled the effects of past and expected future changes in climate (temperature, precipitation),...
We modelled the effects of past and expected future changes in climate (temperature, precipitation),...
Changes in the Earth’s atmosphere are expected to influence the growth, and therefore, carbon accumu...
We modelled the combined effects of past and expected future changes in climate and nitrogen deposit...
We modelled the combined effects of past and expected future changes in climate and nitrogen deposit...
An estimate of net carbon (C) pool changes and long-term C sequestration in trees and soils was made...
Important forest ecosystem services are pollutant filtering relevant for an adequate water quality (...
Forests are important components of the greenhouse gas balance of Europe. There is considerable unc...
The process based model SMART–SUMO–WATBAL was applied to 166 intensive monitoring forest plots of mi...
Temperate forests are affected by a wide variety of environmental factors that stem from human indus...
Forests are important components of the greenhouse gas balance of Europe. There is considerable unce...
In the climate change discussion, the possibility of carbon sequestration of forests plays an import...
Carbon sequestration by terrestrial vegetation is important for the budget of greenhouse gas (GHG) f...
International audienceAtmospheric N deposition is known to severely impact forest ecosystem function...