Climate change and excessive fertilization will threaten the crops yields and nitrogen utilization in coming decades. The aim of this study is to quantify the response of crop yields and nitrogen use efficiency (NUE) to different fertilization strategies and climate change scenarios in the northern China by 2100 using the process-based SPACSYS model. The model was calibrated and validated with the data from four long-term experiments with winter wheat (Triticum Aestivium L.) and summer maize (Zea mays L.) rotation in the northern China. Five fertilizer treatments based on the long-term experiments were chosen: non-fertilizer (CK), a combination of mineral nitrogen, phosphorus and potassium (NPK), NPK plus manure (NPKM), a high application r...
A modeling approach was used to analyze the response of crop productivity to irrigation in the North...
The optimization of nitrogen (N) fertilization has become an ever more important global challenge wi...
Global climate change may impact grain production as atmospheric conditions and water supply change,...
In the face of global climate change, changes in nitrogen use efficiency (NUE) have not been widely ...
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...
© 2019 Elsevier B.V. Climate change impacts on winter wheat yield and water-use were assessed with t...
The reported effects of nitrogen (N) fertilizer on wheat yield and nitrogen use efficiency (NUE) var...
The North China Plain (NCP) is one of the most important regions for food production in China, with ...
Excessive synthetic nitrogen (N) applications, high mineral N accumulation and low N use efficiency ...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
Accurate modelling of agricultural management impacts on greenhouse gas emissions and the cycling of...
Global population increase will require rapid increase of food production from existing agricultural...
There is a growing concern about excessive nitrogen (N) and water use in agricultural systems in Nor...
Global population increase will require rapid increase of food production from existing agricultural...
A modeling approach was used to analyze the response of crop productivity to irrigation in the North...
The optimization of nitrogen (N) fertilization has become an ever more important global challenge wi...
Global climate change may impact grain production as atmospheric conditions and water supply change,...
In the face of global climate change, changes in nitrogen use efficiency (NUE) have not been widely ...
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...
© 2019 Elsevier B.V. Climate change impacts on winter wheat yield and water-use were assessed with t...
The reported effects of nitrogen (N) fertilizer on wheat yield and nitrogen use efficiency (NUE) var...
The North China Plain (NCP) is one of the most important regions for food production in China, with ...
Excessive synthetic nitrogen (N) applications, high mineral N accumulation and low N use efficiency ...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
Accurate modelling of agricultural management impacts on greenhouse gas emissions and the cycling of...
Global population increase will require rapid increase of food production from existing agricultural...
There is a growing concern about excessive nitrogen (N) and water use in agricultural systems in Nor...
Global population increase will require rapid increase of food production from existing agricultural...
A modeling approach was used to analyze the response of crop productivity to irrigation in the North...
The optimization of nitrogen (N) fertilization has become an ever more important global challenge wi...
Global climate change may impact grain production as atmospheric conditions and water supply change,...