Pastures require year-round access to water and in some locations rely on irrigation during dry periods. Currently, there is a dearth of knowledge about the potential for using irrigation to mitigate N2O emissions. This study aimed to mitigate N2O losses from intensely managed pastures by adjusting irrigation frequency using soil gas diffusivity (Dp /Do ) thresholds. Two irrigation regimes were compared; a standard irrigation treatment based on farmer practice (15 mm applied every 3 days) versus an optimised irrigation treatment where irrigation was applied when soil Dp /Do was ≈0.033 (equivalent to 50% of plant available water). Cow urine was applied at a rate of 700 kg N ha−1 to simulate a ruminant urine deposition event. In addition to N...
A decline in pasture productivity is often associated with a reduction in vegetative cover. We hypot...
Cattle grazing of pastures deposits urine onto the pasture soil at high nitrogen (N) rates that exce...
Ruminant urine deposition onto pasture creates hot-spots where emissions of nitrous oxide (N₂O) are ...
Pastures require year-round access to water and in some locations rely on irrigation during dry peri...
Denitrification is a key pathway of N loss in pastures and contributes to the low nitrogen use effic...
© American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America...
This study investigated the effects of irrigation frequency on N2 and N2O emissions from an intensiv...
Nitrous oxide (N₂O) is one of the important greenhouse gases (GHGs) that contributes to climate chan...
This thesis is a combination of field and laboratory studies aimed at understanding how irrigation i...
Urine patches in pastures rank among the highest sources of the greenhouse gas nitrous oxide (N2O) f...
AbstractEmissions of nitrous oxide (N2O) from soils from grazed grasslands have large uncertainty du...
Cattle, grazing pastures, deposit urine onto the soil at high nitrogen (N) rates that exceed the pas...
Despite optimising fertiliser practice and nitrogen (N) use efficiency nitrous oxide N2O generation ...
Intensification in dairying and increased production of farm dairy effluent (FDE) has raised concern...
Few mitigation strategies are known or tested for nitrous oxide (N2O) emissions from urine patches i...
A decline in pasture productivity is often associated with a reduction in vegetative cover. We hypot...
Cattle grazing of pastures deposits urine onto the pasture soil at high nitrogen (N) rates that exce...
Ruminant urine deposition onto pasture creates hot-spots where emissions of nitrous oxide (N₂O) are ...
Pastures require year-round access to water and in some locations rely on irrigation during dry peri...
Denitrification is a key pathway of N loss in pastures and contributes to the low nitrogen use effic...
© American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America...
This study investigated the effects of irrigation frequency on N2 and N2O emissions from an intensiv...
Nitrous oxide (N₂O) is one of the important greenhouse gases (GHGs) that contributes to climate chan...
This thesis is a combination of field and laboratory studies aimed at understanding how irrigation i...
Urine patches in pastures rank among the highest sources of the greenhouse gas nitrous oxide (N2O) f...
AbstractEmissions of nitrous oxide (N2O) from soils from grazed grasslands have large uncertainty du...
Cattle, grazing pastures, deposit urine onto the soil at high nitrogen (N) rates that exceed the pas...
Despite optimising fertiliser practice and nitrogen (N) use efficiency nitrous oxide N2O generation ...
Intensification in dairying and increased production of farm dairy effluent (FDE) has raised concern...
Few mitigation strategies are known or tested for nitrous oxide (N2O) emissions from urine patches i...
A decline in pasture productivity is often associated with a reduction in vegetative cover. We hypot...
Cattle grazing of pastures deposits urine onto the pasture soil at high nitrogen (N) rates that exce...
Ruminant urine deposition onto pasture creates hot-spots where emissions of nitrous oxide (N₂O) are ...