Ammonia fluxes over vegetated land are bi-directional, with differences between emission and deposition occurring in relation to environmental conditions (temperature and wetness), plant community (e.g. arable land, unfertilized ecosystems), as well as other factors such as plant phenology. In the present paper, measurements of net NH3 fluxes over arable cropland are reported in the range −50 to 40 ng m−2s−1. These are used as examples to highlight the factors affecting the exchange process. Net fluxes are expected to depend on the competition between deposition to leaf surfaces and bi-directional exchange with a “stomatal compensation point” for leaf tissues (χs). Current models describe this effect poorly, and two new resistance models ar...
As part of the study of the ammonia budget over Great Dun Fell, measurements of fluxes of gaseous am...
An integrated field experiment was organized as part of the EC EXAMINE project to quantify surface–a...
Understanding and predicting the ammonia (NH3) exchange between the biosphere and the atmosphere is ...
Micrometeorological measurements of atmospheric ammonia (NH3) exchange with semi-natural and agricul...
The results of recent controlled environment and micrometeorological measure- ments of NH3 fluxes ar...
Measurements of the exchange of gaseous ammonia (NH3) have been made over fertilized plant canopies ...
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...
A mechanistic, dynamic compensation point model to simulate the vegetation/atmosphere exchange of am...
New parameterizations for surface–atmosphere exchange of ammonia are presented for application in at...
Processes of ammonia (NH3) air-surface exchange in fertilized crops include bi-directional flux (emi...
A new biophysical model SURFATM-NH3, simulating the ammonia (NH3) exchange between terrestrial ecosy...
Improved data on biosphere-atmosphere exchange are fundamental to understanding the production and f...
Micrometeorological techinques have been used to measure the surface/atmosphere exchange of gaseous ...
Understanding and predicting the ammonia (NH3) exchange between the biosphere and the atmosphere is ...
As part of the study of the ammonia budget over Great Dun Fell, measurements of fluxes of gaseous am...
An integrated field experiment was organized as part of the EC EXAMINE project to quantify surface–a...
Understanding and predicting the ammonia (NH3) exchange between the biosphere and the atmosphere is ...
Micrometeorological measurements of atmospheric ammonia (NH3) exchange with semi-natural and agricul...
The results of recent controlled environment and micrometeorological measure- ments of NH3 fluxes ar...
Measurements of the exchange of gaseous ammonia (NH3) have been made over fertilized plant canopies ...
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...
A mechanistic, dynamic compensation point model to simulate the vegetation/atmosphere exchange of am...
New parameterizations for surface–atmosphere exchange of ammonia are presented for application in at...
Processes of ammonia (NH3) air-surface exchange in fertilized crops include bi-directional flux (emi...
A new biophysical model SURFATM-NH3, simulating the ammonia (NH3) exchange between terrestrial ecosy...
Improved data on biosphere-atmosphere exchange are fundamental to understanding the production and f...
Micrometeorological techinques have been used to measure the surface/atmosphere exchange of gaseous ...
Understanding and predicting the ammonia (NH3) exchange between the biosphere and the atmosphere is ...
As part of the study of the ammonia budget over Great Dun Fell, measurements of fluxes of gaseous am...
An integrated field experiment was organized as part of the EC EXAMINE project to quantify surface–a...
Understanding and predicting the ammonia (NH3) exchange between the biosphere and the atmosphere is ...