Corn is one of most important agricultural products in China. Understanding impacts of regional climate change, as well as agricultural management practices, on corn yields is critical for maintaining stable corn production. Using the DayCent model and observed climatic data in Sichuan province (a humid and hot environment) and Hebei province (a cold and dry environment) in China, corn yields in 1948-2010 were simulated. The spatial variations of simulated corn yields and the relationship between regional climate variability and warming with corn yields in these two environments were analyzed. The results demonstrated that: (1) corn yields in Zhangjiakou of Hebei and most regions of Sichuan decreased significantly after 2000 compared to oth...
Northeast China (NEC) is a region sensitive to climate change. However, the adoption of long-season ...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...
In the present study, the effect of weather on maize yields in northern China was examined using dat...
Northeast China (NEC), the most productive maize growing area in China, has experienced pronounced c...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
Recent crop model projections have shown that crop production may benefit from warming, especially i...
Jilin is among the most important grain-producing provinces in China. Its maize productionplays an i...
Jilin is among the most important grain-producing provinces in China. Its maize production plays an ...
Using a unique county-level panel on crop yields and daily weather dataset over the past decade, we ...
Summer maize (Zea mays L.) is one of the dominant crops in the North China Plain (NCP). Itsgrowth is...
In this study, we examine the effect of climate on corn yields in northern China using data from ten...
This paper reinvestigated the climate-crop yield relationship with the statistical model at crops’ g...
Extensive studies had been conducted to investigate the impacts of climate change on maize growth an...
The Northeast China (NEC) was the most important agriculture areas and known as the Golden-Maize-Bel...
Northeast China (NEC) is a region sensitive to climate change. However, the adoption of long-season ...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...
In the present study, the effect of weather on maize yields in northern China was examined using dat...
Northeast China (NEC), the most productive maize growing area in China, has experienced pronounced c...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
Recent crop model projections have shown that crop production may benefit from warming, especially i...
Jilin is among the most important grain-producing provinces in China. Its maize productionplays an i...
Jilin is among the most important grain-producing provinces in China. Its maize production plays an ...
Using a unique county-level panel on crop yields and daily weather dataset over the past decade, we ...
Summer maize (Zea mays L.) is one of the dominant crops in the North China Plain (NCP). Itsgrowth is...
In this study, we examine the effect of climate on corn yields in northern China using data from ten...
This paper reinvestigated the climate-crop yield relationship with the statistical model at crops’ g...
Extensive studies had been conducted to investigate the impacts of climate change on maize growth an...
The Northeast China (NEC) was the most important agriculture areas and known as the Golden-Maize-Bel...
Northeast China (NEC) is a region sensitive to climate change. However, the adoption of long-season ...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...