Maize yield has undergone obvious spatial and temporal changes in recent decades in Northeast China. Understanding how maize potential yield has changed over the past few decades and how large the gaps between potential and actual maize yields are is essential for increasing maize yield to meet increased food demand in Northeast China. In this study, the spatial and temporal dynamics of maize potential yield in Northeast China from 1990 to 2015 were simulated using the Global Agro-ecological Zones (GAEZ) model at the pixel level firstly. Then, the yield gaps between actual and potential yields were analyzed at city scale. The results were the following. (1) The maize potential yield decreased by about 500 kg/ha and the potential production ...
Grain yields of wheat and maize were obtained from national statistics and simulated with an agricul...
We used the APSIM-Maize model to simulate maize potential yield (Yp) and rain-fed yield (Yw) when ad...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...
The precise spatially explicit knowledge about crop yield potentials and yield gaps is essential to ...
The Northeast China (NEC) was the most important agriculture areas and known as the Golden-Maize-Bel...
Crop potential productivity is a key index of scientifically appraising crop production and land pop...
Northeast China (NEC), the most productive maize growing area in China, has experienced pronounced c...
Citation: Liu, Z. J., Yang, X. G., Lin, X. M., Hubbard, K. G., Lv, S., & Wang, J. (2016). Narrowing ...
Jilin is among the most important grain-producing provinces in China. Its maize production plays an ...
AbstractUnderstanding yield potentials and exploitable gaps in current intensive maize (Zea mays L.)...
Jilin is among the most important grain-producing provinces in China. Its maize productionplays an i...
Maize (Zea mays L.) is one of the most important staple crops in Northeast China, and yield losses a...
Agricultural adaptation is crucial for sustainable farming amid global climate change. By harnessing...
Northeast China (NEC) is a region sensitive to climate change. However, the adoption of long-season ...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
Grain yields of wheat and maize were obtained from national statistics and simulated with an agricul...
We used the APSIM-Maize model to simulate maize potential yield (Yp) and rain-fed yield (Yw) when ad...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...
The precise spatially explicit knowledge about crop yield potentials and yield gaps is essential to ...
The Northeast China (NEC) was the most important agriculture areas and known as the Golden-Maize-Bel...
Crop potential productivity is a key index of scientifically appraising crop production and land pop...
Northeast China (NEC), the most productive maize growing area in China, has experienced pronounced c...
Citation: Liu, Z. J., Yang, X. G., Lin, X. M., Hubbard, K. G., Lv, S., & Wang, J. (2016). Narrowing ...
Jilin is among the most important grain-producing provinces in China. Its maize production plays an ...
AbstractUnderstanding yield potentials and exploitable gaps in current intensive maize (Zea mays L.)...
Jilin is among the most important grain-producing provinces in China. Its maize productionplays an i...
Maize (Zea mays L.) is one of the most important staple crops in Northeast China, and yield losses a...
Agricultural adaptation is crucial for sustainable farming amid global climate change. By harnessing...
Northeast China (NEC) is a region sensitive to climate change. However, the adoption of long-season ...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
Grain yields of wheat and maize were obtained from national statistics and simulated with an agricul...
We used the APSIM-Maize model to simulate maize potential yield (Yp) and rain-fed yield (Yw) when ad...
The impact of climate change on crop yield is compounded by cultivar shifts and agronomic management...