Global cereal production will need to increase by 50% to 70% to feed a world population of about 9 billion by 2050. This intensification is forecast to occur mostly in subtropical regions, where warm and humid conditions can promote high N2O losses from cropped soils. To secure high crop production without exacerbating N2O emissions, new nitrogen (N) fertiliser management strategies are necessary. This one-year study evaluated the efficacy of a nitrification inhibitor (3,4-dimethylpyrazole phosphate—DMPP) and different N fertiliser rates to reduce N2O emissions in a wheat–maize rotation in subtropical Australia. Annual N2O emissions were monitored using a fully automated greenhouse gas measuring system. Four treatments were fertilized with ...
Improving fertiliser nitrogen (N) use efficiency is essential to increase productivity and avoid env...
Efficient management of nitrogen (N) is critical to the profitability and sustainability of agricult...
23% of global agricultural land are situated in the subtropics. Nitrous oxide (N2O) emissions were e...
Global cereal production will need to increase by 50% to 70% to feed a world population of about 9 b...
Global cereal production will need to increase by 50% to 70% to feed a world population of about 9 b...
The potential for elevated nitrous oxide (N2O) losses is high in subtropical cereal cropping systems...
To meet the global food demand in the coming decades, crop yields per unit area must increase. This ...
To meet the global food demand in the coming decades, crop yields per unit area must increase. This ...
Nitrogen (N) fertilization leads to the release of reactive N species, which can be detrimental to t...
The DAYCENT biogeochemical model was used to investigate how the use of fertilizers coated with nitr...
Vegetable production systems are characterised by intensive production with high inputs of nitrogen ...
The DAYCENT biogeochemical model was used to investigate how the use of fertilizers coated with nitr...
The northern Australian grains industry relies on nitrogen (N) fertiliser to optimise yield and prot...
Organic fertilisers can reduce the carbon (C) footprint from croplands, but adequate management stra...
The use of nitrification inhibitors, in combination with ammonium based fertilisers, has been promot...
Improving fertiliser nitrogen (N) use efficiency is essential to increase productivity and avoid env...
Efficient management of nitrogen (N) is critical to the profitability and sustainability of agricult...
23% of global agricultural land are situated in the subtropics. Nitrous oxide (N2O) emissions were e...
Global cereal production will need to increase by 50% to 70% to feed a world population of about 9 b...
Global cereal production will need to increase by 50% to 70% to feed a world population of about 9 b...
The potential for elevated nitrous oxide (N2O) losses is high in subtropical cereal cropping systems...
To meet the global food demand in the coming decades, crop yields per unit area must increase. This ...
To meet the global food demand in the coming decades, crop yields per unit area must increase. This ...
Nitrogen (N) fertilization leads to the release of reactive N species, which can be detrimental to t...
The DAYCENT biogeochemical model was used to investigate how the use of fertilizers coated with nitr...
Vegetable production systems are characterised by intensive production with high inputs of nitrogen ...
The DAYCENT biogeochemical model was used to investigate how the use of fertilizers coated with nitr...
The northern Australian grains industry relies on nitrogen (N) fertiliser to optimise yield and prot...
Organic fertilisers can reduce the carbon (C) footprint from croplands, but adequate management stra...
The use of nitrification inhibitors, in combination with ammonium based fertilisers, has been promot...
Improving fertiliser nitrogen (N) use efficiency is essential to increase productivity and avoid env...
Efficient management of nitrogen (N) is critical to the profitability and sustainability of agricult...
23% of global agricultural land are situated in the subtropics. Nitrous oxide (N2O) emissions were e...