© Springer Science+Business Media Dordrecht 2017. Black Vertosols of subtropical Australia emit large amounts of nitrous oxide (N2O) to the atmosphere under fertilizer-applied grain cropping compared to other Australian cropping soils. N2O emissions can be mitigated by either reducing fertilizer N inputs or altering crop rotation systems. In this study, the WNMM agroecosystem model was used to investigate the responses of N2O emissions from four different crop rotation systems including canola-wheat-barley (T1CaWB), chickpea-wheat-barley (T3CpWB), chickpea-wheat-chickpea (T4CpWCp), and chickpea-Sorghum (T5CpS) under projected future climate change scenarios on a black Vertosol at Tamworth, New South Wales, Australia. In simulations of the t...
Nitrogen (N) fertiliser is a major source of atmospheric nitrous oxide (N2O), and over recent years ...
Introducing nitrogen (N)-fixing legumes into cereal-based crop rotations reduces synthetic fertilise...
Background and Aims:\ud Irrigation management affects soil water dynamics as well as the soil microb...
23% of global agricultural land are situated in the subtropics. Nitrous oxide (N2O) emissions were e...
23% of global agricultural land are situated in the subtropics. Nitrous oxide (NO) emissions were es...
Increases in the concentrations of greenhouse gases, carbon dioxide (CO), methane (CH), nitrous oxid...
The northern Australian grains industry relies on nitrogen (N) fertiliser to optimise yield and prot...
Nitrous oxide emissions from intensive, fertilised agricultural systems have been identified as sign...
Semi-arid lands represent one fifth of the global land area but our understanding of greenhouse gas ...
Reducing nitrous oxide (N2O) emissions from agriculture soils is crucial, as it accounts for 5.6-6.8...
Approximately 65% of anthropogenic emissions of N2O, a potent greenhouse gas (GHG), originate from s...
The agricultural sector generates a substantial proportion of global greenhouse gas (GHG) emissions ...
Crop production is a significant contributor to greenhouse gas emissions because cropping inputs and...
Alternative sources of N are required to bolster subtropical cereal production without increasing N2...
Global cereal production will need to increase by 50% to 70% to feed a world population of about 9 b...
Nitrogen (N) fertiliser is a major source of atmospheric nitrous oxide (N2O), and over recent years ...
Introducing nitrogen (N)-fixing legumes into cereal-based crop rotations reduces synthetic fertilise...
Background and Aims:\ud Irrigation management affects soil water dynamics as well as the soil microb...
23% of global agricultural land are situated in the subtropics. Nitrous oxide (N2O) emissions were e...
23% of global agricultural land are situated in the subtropics. Nitrous oxide (NO) emissions were es...
Increases in the concentrations of greenhouse gases, carbon dioxide (CO), methane (CH), nitrous oxid...
The northern Australian grains industry relies on nitrogen (N) fertiliser to optimise yield and prot...
Nitrous oxide emissions from intensive, fertilised agricultural systems have been identified as sign...
Semi-arid lands represent one fifth of the global land area but our understanding of greenhouse gas ...
Reducing nitrous oxide (N2O) emissions from agriculture soils is crucial, as it accounts for 5.6-6.8...
Approximately 65% of anthropogenic emissions of N2O, a potent greenhouse gas (GHG), originate from s...
The agricultural sector generates a substantial proportion of global greenhouse gas (GHG) emissions ...
Crop production is a significant contributor to greenhouse gas emissions because cropping inputs and...
Alternative sources of N are required to bolster subtropical cereal production without increasing N2...
Global cereal production will need to increase by 50% to 70% to feed a world population of about 9 b...
Nitrogen (N) fertiliser is a major source of atmospheric nitrous oxide (N2O), and over recent years ...
Introducing nitrogen (N)-fixing legumes into cereal-based crop rotations reduces synthetic fertilise...
Background and Aims:\ud Irrigation management affects soil water dynamics as well as the soil microb...