Serious water deficits and deteriorating environmental quality are threatening agricultural sustainability in the North China Plain (NCP). This paper addresses spatial and temporal availability of water resources in the NCP, identifies the effects of soil management, irrigation timing and amounts, and crop genetic improvement on water use efficiency (WUE), and then discusses knowledge gaps and research priorities to further improve WUE. Enhanced irrigation and soil nutrient (mainly nitrogen) management are the focal issues in the NCP for enhancing WUE, which are shown to increase WUE by 10-25% in a wheat-maize double cropping system. Crop breeding has also contributed to increased of WUE and is expected to play an important role in the futu...
There is a growing concern about excessive nitrogen (N) and water use in agricultural systems in Nor...
In the North China Plain (NCP), excessive groundwater pumping is a serious problem. In this study, d...
Water is the most important limiting factor of wheat (Triticum aestivum L.) and maize (Zea mays L.) ...
Food security is an issue of global concern, which is tightly linked with water supply issues as reg...
Reducing irrigation water use by improving water use efficiency (WUE) in grain production is critica...
Water shortage in China, particularly in the north and northwest of China, is very serious. The regi...
Water shortage in China, particularly in the north and northwest of China, is very serious. The regi...
There is a growing concern about excessive nitrogen (N) and water use in agricultural systems in Nor...
The North China Plain (NCP) is the largest agricultural production area in China. The extensive use ...
Irrigation and fertilisation are often over-applied, which exceeds crop requirements. Surface fertig...
Crop yield and water use efficiency (WUE) in a wheat-maize double cropping system are influenced by ...
The serious water scarcity and groundwater over-exploitation problems of the North China Plain (NCP)...
The serious water scarcity and groundwater over-exploitation problems of the North China Plain (NCP)...
<div><p>The North China Plain is one of the most important grain production regions in China, but is...
The serious water scarcity and groundwater over-exploitation problems of the North China Plain (NCP)...
There is a growing concern about excessive nitrogen (N) and water use in agricultural systems in Nor...
In the North China Plain (NCP), excessive groundwater pumping is a serious problem. In this study, d...
Water is the most important limiting factor of wheat (Triticum aestivum L.) and maize (Zea mays L.) ...
Food security is an issue of global concern, which is tightly linked with water supply issues as reg...
Reducing irrigation water use by improving water use efficiency (WUE) in grain production is critica...
Water shortage in China, particularly in the north and northwest of China, is very serious. The regi...
Water shortage in China, particularly in the north and northwest of China, is very serious. The regi...
There is a growing concern about excessive nitrogen (N) and water use in agricultural systems in Nor...
The North China Plain (NCP) is the largest agricultural production area in China. The extensive use ...
Irrigation and fertilisation are often over-applied, which exceeds crop requirements. Surface fertig...
Crop yield and water use efficiency (WUE) in a wheat-maize double cropping system are influenced by ...
The serious water scarcity and groundwater over-exploitation problems of the North China Plain (NCP)...
The serious water scarcity and groundwater over-exploitation problems of the North China Plain (NCP)...
<div><p>The North China Plain is one of the most important grain production regions in China, but is...
The serious water scarcity and groundwater over-exploitation problems of the North China Plain (NCP)...
There is a growing concern about excessive nitrogen (N) and water use in agricultural systems in Nor...
In the North China Plain (NCP), excessive groundwater pumping is a serious problem. In this study, d...
Water is the most important limiting factor of wheat (Triticum aestivum L.) and maize (Zea mays L.) ...