A new biophysical model SURFATM-NH3, simulating the ammonia (NH3) exchange between terrestrial ecosystems and the atmosphere is presented. SURFATM-NH3 consists of two coupled models: (i) an energy budget model and (ii) a pollutant exchange model, which distinguish the soil and plant exchange processes. The model describes the exchanges in terms of adsorption to leaf cuticles and bi-directional transport through leaf stomata and soil. The results of the model are compared with the flux measurements over grassland during the GRAMINAE Integrated Experiment at Braunschweig, Germany. The dataset of GRAMINAE allows the model to be tested in various meteorological and agronomic conditions: prior to cutting, after cutting and then after the applica...
A major international experiment on ammonia (NH3) biosphere-atmosphere exchange was conducted over i...
Ammonia exchanges between the atmosphere and terrestrial ecosystems are composed of several pathways...
Micrometeorological measurements of atmospheric ammonia (NH3) exchange with semi-natural and agricul...
A new biophysical model SURFATM-NH3, simulating the ammonia (NH3) exchange between terrestrial ecosy...
Ammonia exchange fluxes between grassland and the atmosphere were modelled on the basis of stomatal ...
Improved data on biosphere-atmosphere exchange are fundamental to understanding the production and f...
Ammonia fluxes over vegetated land are bi-directional, with differences between emission and deposit...
New parameterizations for surfaceeatmosphere exchange of ammonia are presented for application in at...
A mechanistic, dynamic compensation point model to simulate the vegetation/atmosphere exchange of am...
Atmospheric ammonia (NH3) dominates global emissions of total reactive nitrogen (Nr), while emission...
A new study to address the biosphere-atmosphere exchange of ammonia (NH3) with grasslands is applyin...
The results of recent controlled environment and micrometeorological measure- ments of NH3 fluxes ar...
International audienceAmmonia exchange fluxes between grassland and the atmosphere were modeled on t...
A major international experiment on ammonia (NH3) biosphere-atmosphere exchange was conducted over i...
Ammonia exchanges between the atmosphere and terrestrial ecosystems are composed of several pathways...
Micrometeorological measurements of atmospheric ammonia (NH3) exchange with semi-natural and agricul...
A new biophysical model SURFATM-NH3, simulating the ammonia (NH3) exchange between terrestrial ecosy...
Ammonia exchange fluxes between grassland and the atmosphere were modelled on the basis of stomatal ...
Improved data on biosphere-atmosphere exchange are fundamental to understanding the production and f...
Ammonia fluxes over vegetated land are bi-directional, with differences between emission and deposit...
New parameterizations for surfaceeatmosphere exchange of ammonia are presented for application in at...
A mechanistic, dynamic compensation point model to simulate the vegetation/atmosphere exchange of am...
Atmospheric ammonia (NH3) dominates global emissions of total reactive nitrogen (Nr), while emission...
A new study to address the biosphere-atmosphere exchange of ammonia (NH3) with grasslands is applyin...
The results of recent controlled environment and micrometeorological measure- ments of NH3 fluxes ar...
International audienceAmmonia exchange fluxes between grassland and the atmosphere were modeled on t...
A major international experiment on ammonia (NH3) biosphere-atmosphere exchange was conducted over i...
Ammonia exchanges between the atmosphere and terrestrial ecosystems are composed of several pathways...
Micrometeorological measurements of atmospheric ammonia (NH3) exchange with semi-natural and agricul...