The Northeast China (NEC) was the most important agriculture areas and known as the Golden-Maize-Belt. Based on observed crop data and crop model, we design four simulating experiments and separate relative impacts and contribution under climate change, planting date shift, and varieties change as well change of varieties and planting date. Without planting date and varieties change, maize yields had no significant change trend at Hailun station located in the north of NEC, and presented significant decrease by 0.2 - 0.4 t/10a at two stations, which located in the middle and the south of NEC. With planting date change, yields showed a significant increase by 0.09 - 0.47 t/10a. With varieties change, maize yields had significant increase by ...
Climate change has caused significant alterations in crop cultivation patterns and has affected crop...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
As climate change could significantly influence crop phenology and subsequent crop yield, adaptation...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...
Extensive studies had been conducted to investigate the impacts of climate change on maize growth an...
Northeast China (NEC) is a region sensitive to climate change. However, the adoption of long-season ...
Agricultural adaptation is crucial for sustainable farming amid global climate change. By harnessing...
Maize yield has undergone obvious spatial and temporal changes in recent decades in Northeast China....
Northeast China (NEC), the most productive maize growing area in China, has experienced pronounced c...
We used the APSIM-Maize model to simulate maize potential yield (Yp) and rain-fed yield (Yw) when ad...
Jilin is among the most important grain-producing provinces in China. Its maize production plays an ...
Maize (Zea mays L.) is one of the most important staple crops in Northeast China, and yield losses a...
In the present study, the effect of weather on maize yields in northern China was examined using dat...
Jilin is among the most important grain-producing provinces in China. Its maize productionplays an i...
Climate change has caused significant alterations in crop cultivation patterns and has affected crop...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
As climate change could significantly influence crop phenology and subsequent crop yield, adaptation...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...
Extensive studies had been conducted to investigate the impacts of climate change on maize growth an...
Northeast China (NEC) is a region sensitive to climate change. However, the adoption of long-season ...
Agricultural adaptation is crucial for sustainable farming amid global climate change. By harnessing...
Maize yield has undergone obvious spatial and temporal changes in recent decades in Northeast China....
Northeast China (NEC), the most productive maize growing area in China, has experienced pronounced c...
We used the APSIM-Maize model to simulate maize potential yield (Yp) and rain-fed yield (Yw) when ad...
Jilin is among the most important grain-producing provinces in China. Its maize production plays an ...
Maize (Zea mays L.) is one of the most important staple crops in Northeast China, and yield losses a...
In the present study, the effect of weather on maize yields in northern China was examined using dat...
Jilin is among the most important grain-producing provinces in China. Its maize productionplays an i...
Climate change has caused significant alterations in crop cultivation patterns and has affected crop...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
As climate change could significantly influence crop phenology and subsequent crop yield, adaptation...