Within irrigated agricultural watersheds, canal networks may play a crucial role as nitrogen (N) sink. This is due to the intertwined action of macrophytes and microbial communities occurring in the dense net of small watercourses. We hypothesize that vegetated canals may buffer relevant fractions of excess N from agriculture via microbial denitrification, and that vegetation provides multiple interfaces that greatly support the activity of bacteria. To test these hypotheses, we measured net dinitrogen (N2) fluxes in bare sediments and at the reach-scale in vegetated ditches. As study areas we selected canals subjected to diffuse N pollution, laying in a lowland sub-basin of the Po River (northern Italy). Denitrification was evaluated on th...
Denitrification is a key process buffering the environmental impacts of agricultural nitrate loads b...
Wetland ecosystems in agricultural areas often become progressively more isolated from main water bo...
In shallow-water systems with calm hydrodynamic, dense vegetation stands provide most of the availab...
Within irrigated agricultural watersheds, canal networks may play a crucial role as nitrogen (N) sin...
In permeable soils, excess nitrate from agriculture is transported vertically and accumulates in aqu...
In permeable soils, excess nitrate from agriculture is transported vertically and accumulates in aqu...
The evaluation of nitrogen (N) removal in aquatic ecosystems within human exploited watersheds may a...
The evaluation of nitrogen (N) removal in aquatic ecosystems within human exploited watersheds may a...
Human activities drastically altered the nitrogen cycle on a global scale, mainly causing a strong i...
Detailed studies on pollutants genesis, path and transformation are needed in agricultural catchment...
Detailed studies on pollutants genesis, path and transformation are needed in agricultural catchment...
Nitrogen and phosphorus reduction were evaluated in the canals of the Po River Delta, vegetated by t...
Wetland ecosystems in agricultural areas often become progressively more isolated from main water bo...
Detailed studies on pollutants genesis, path and transformation are needed in agricultural catchment...
Denitrification is a key process buffering the environmental impacts of agricultural nitrate loads b...
Denitrification is a key process buffering the environmental impacts of agricultural nitrate loads b...
Wetland ecosystems in agricultural areas often become progressively more isolated from main water bo...
In shallow-water systems with calm hydrodynamic, dense vegetation stands provide most of the availab...
Within irrigated agricultural watersheds, canal networks may play a crucial role as nitrogen (N) sin...
In permeable soils, excess nitrate from agriculture is transported vertically and accumulates in aqu...
In permeable soils, excess nitrate from agriculture is transported vertically and accumulates in aqu...
The evaluation of nitrogen (N) removal in aquatic ecosystems within human exploited watersheds may a...
The evaluation of nitrogen (N) removal in aquatic ecosystems within human exploited watersheds may a...
Human activities drastically altered the nitrogen cycle on a global scale, mainly causing a strong i...
Detailed studies on pollutants genesis, path and transformation are needed in agricultural catchment...
Detailed studies on pollutants genesis, path and transformation are needed in agricultural catchment...
Nitrogen and phosphorus reduction were evaluated in the canals of the Po River Delta, vegetated by t...
Wetland ecosystems in agricultural areas often become progressively more isolated from main water bo...
Detailed studies on pollutants genesis, path and transformation are needed in agricultural catchment...
Denitrification is a key process buffering the environmental impacts of agricultural nitrate loads b...
Denitrification is a key process buffering the environmental impacts of agricultural nitrate loads b...
Wetland ecosystems in agricultural areas often become progressively more isolated from main water bo...
In shallow-water systems with calm hydrodynamic, dense vegetation stands provide most of the availab...