Improved data on biosphere-atmosphere exchange are fundamental to understanding the production and fate of ammonia (NH3) in the atmosphere. The GRAMINAE Integrated Experiment combined novel measurement and modelling approaches to provide the most comprehensive analysis of the interactions to date. Major intercomparisons of micrometeorological parameters and NH3 flux measurements using the aerodynamic gradient method and relaxed eddy accumulation (REA) were conducted. These showed close agreement, though the REA systems proved insufficiently precise to investigate vertical flux divergence. Grassland management had a large effect on fluxes: emissions increased after grass cutting (−50 to 700 ngm−2 s−1 NH3) and after N-fertilization (0 to 3800...
International audienceAmmonia exchange fluxes between grassland and the atmosphere were modeled on t...
Ammonia fluxes over vegetated land are bi-directional, with differences between emission and deposit...
An integrated field experiment was organized as part of the EC EXAMINE project to quantify surface–a...
Improved data on biosphere-atmosphere exchange are fundamental to understanding the production and f...
A major international experiment on ammonia (NH3) biosphere-atmosphere exchange was conducted over i...
A major international experiment on ammonia (NH3) biosphere-atmosphere exchange was conducted over i...
A new study to address the biosphere-atmosphere exchange of ammonia (NH3) with grasslands is applyin...
Quantification of ammonia (NH3) land-atmosphere exchange is required for atmospheric modelling and a...
Micrometeorological measurements of atmospheric ammonia (NH3) exchange with semi-natural and agricul...
Ammonia exchange fluxes between grassland and the atmosphere were modelled on the basis of stomatal ...
Atmospheric ammonia (NH3) dominates global emissions of total reactive nitrogen (Nr), while emission...
Grasslands represent canopies with a complex structure where sources and sinks of ammonia (NH3) may ...
Measurements of the exchange of gaseous ammonia (NH3) have been made over fertilized plant canopies ...
A new biophysical model SURFATM-NH3, simulating the ammonia (NH3) exchange between terrestrial ecosy...
International audienceAmmonia exchange fluxes between grassland and the atmosphere were modeled on t...
Ammonia fluxes over vegetated land are bi-directional, with differences between emission and deposit...
An integrated field experiment was organized as part of the EC EXAMINE project to quantify surface–a...
Improved data on biosphere-atmosphere exchange are fundamental to understanding the production and f...
A major international experiment on ammonia (NH3) biosphere-atmosphere exchange was conducted over i...
A major international experiment on ammonia (NH3) biosphere-atmosphere exchange was conducted over i...
A new study to address the biosphere-atmosphere exchange of ammonia (NH3) with grasslands is applyin...
Quantification of ammonia (NH3) land-atmosphere exchange is required for atmospheric modelling and a...
Micrometeorological measurements of atmospheric ammonia (NH3) exchange with semi-natural and agricul...
Ammonia exchange fluxes between grassland and the atmosphere were modelled on the basis of stomatal ...
Atmospheric ammonia (NH3) dominates global emissions of total reactive nitrogen (Nr), while emission...
Grasslands represent canopies with a complex structure where sources and sinks of ammonia (NH3) may ...
Measurements of the exchange of gaseous ammonia (NH3) have been made over fertilized plant canopies ...
A new biophysical model SURFATM-NH3, simulating the ammonia (NH3) exchange between terrestrial ecosy...
International audienceAmmonia exchange fluxes between grassland and the atmosphere were modeled on t...
Ammonia fluxes over vegetated land are bi-directional, with differences between emission and deposit...
An integrated field experiment was organized as part of the EC EXAMINE project to quantify surface–a...