In the face of global climate change, changes in nitrogen use efficiency (NUE) have not been widely considered to affect agricultural productivity. A modeling study was conducted to assess the impacts of future climates on crop yields and NUE in two wheat (Triticum aestivum L.) and maize (Zea mays L.) rotation systems and one continuous maize system in northern China. Specifically, the process-based SPACSYS model was used to predict crop yields and NUE by 2100, under four climate scenarios (Baseline, RCP2.6, RCP4.5 and RCP8.5). The model was validated using data from three long-term experiments, each of which included four fertilization practices typical of the regions: non-fertilizer, combined mineral N, phosphorus (P) and potassium (K) (N...
The North China Plain (NCP) is one of the most important regions for food production in China, with ...
Excess nitrogen (N) application not only decreases the economic efficiency of fertilizer application...
Global population increase will require rapid increase of food production from existing agricultural...
Climate change and excessive fertilization will threaten the crops yields and nitrogen utilization i...
Process-based agricultural simulation models are effective tools which can be applied to assess the ...
The projected climate change substantially impacts agricultural productivity and global food securit...
The reported effects of nitrogen (N) fertilizer on wheat yield and nitrogen use efficiency (NUE) var...
© 2019 Elsevier B.V. Climate change impacts on winter wheat yield and water-use were assessed with t...
A modeling approach was used to analyze the response of crop productivity to irrigation in the North...
China has long been the world’s most populous nation and faced the double challenge of ensuring its ...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
A modeling approach was used to analyze the response of crop productivity to irrigation in the North...
Global population increase will require rapid increase of food production from existing agricultural...
Excessive N and water use in agriculture causes environmental degradation and can potentially jeopar...
Excessive N and water use in agriculture causes environmental degradation and can potentially jeopar...
The North China Plain (NCP) is one of the most important regions for food production in China, with ...
Excess nitrogen (N) application not only decreases the economic efficiency of fertilizer application...
Global population increase will require rapid increase of food production from existing agricultural...
Climate change and excessive fertilization will threaten the crops yields and nitrogen utilization i...
Process-based agricultural simulation models are effective tools which can be applied to assess the ...
The projected climate change substantially impacts agricultural productivity and global food securit...
The reported effects of nitrogen (N) fertilizer on wheat yield and nitrogen use efficiency (NUE) var...
© 2019 Elsevier B.V. Climate change impacts on winter wheat yield and water-use were assessed with t...
A modeling approach was used to analyze the response of crop productivity to irrigation in the North...
China has long been the world’s most populous nation and faced the double challenge of ensuring its ...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
A modeling approach was used to analyze the response of crop productivity to irrigation in the North...
Global population increase will require rapid increase of food production from existing agricultural...
Excessive N and water use in agriculture causes environmental degradation and can potentially jeopar...
Excessive N and water use in agriculture causes environmental degradation and can potentially jeopar...
The North China Plain (NCP) is one of the most important regions for food production in China, with ...
Excess nitrogen (N) application not only decreases the economic efficiency of fertilizer application...
Global population increase will require rapid increase of food production from existing agricultural...