Using a unique county-level panel on crop yields and daily weather dataset over the past decade, we estimate the impact of climate change on corn and soybean yields in China. Our results suggest the existence of nonlinear and asymmetric relationships between corn and soybean yields and climate variables. We find that extreme high temperatures are always harmful for crop growth. Moreover, the rapid expansion of corn and soybean acreages at both intensive- and extensive margins had detrimental effects on corn and soybean yields. Using estimated coefficients, we estimate changing climate conditions over the study period has led to an economic loss of $220 million in 2009 alone in China’s corn and soybean sectors. Corn yields in China are predi...
Climate has been changing in the last fifty years in China and will continue to change regardless an...
Climate change continues to have major impact on crop productivity all over the world. While many re...
When estimating climate change impact on crop yield, a typical assumption is constant elasticity of ...
To move China's climate policy forward, improved analyses of climate impacts on economic sector...
This study explores the effects of observed warming trends since 1980 on crop yields at both nationa...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
Climate change may affect crop growth and yield, which consequently casts a shadow of doubt over Chi...
This paper reinvestigated the climate-crop yield relationship with the statistical model at crops’ g...
Maize (Zea mays L.) is one of the most important staple crops in Northeast China, and yield losses a...
Understanding climate-yield relationships and the impacts of recent climate trends on crop productiv...
Corn is one of most important agricultural products in China. Understanding impacts of regional clim...
Climate change can bring positive and negative effects on Chinese agriculture, but negative impacts ...
Climate change has significantly affected agricultural production. As one of China's most important ...
Extensive studies had been conducted to investigate the impacts of climate change on maize growth an...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
Climate has been changing in the last fifty years in China and will continue to change regardless an...
Climate change continues to have major impact on crop productivity all over the world. While many re...
When estimating climate change impact on crop yield, a typical assumption is constant elasticity of ...
To move China's climate policy forward, improved analyses of climate impacts on economic sector...
This study explores the effects of observed warming trends since 1980 on crop yields at both nationa...
This study analyzes the impacts of climate change on maize yields using an econometric model that in...
Climate change may affect crop growth and yield, which consequently casts a shadow of doubt over Chi...
This paper reinvestigated the climate-crop yield relationship with the statistical model at crops’ g...
Maize (Zea mays L.) is one of the most important staple crops in Northeast China, and yield losses a...
Understanding climate-yield relationships and the impacts of recent climate trends on crop productiv...
Corn is one of most important agricultural products in China. Understanding impacts of regional clim...
Climate change can bring positive and negative effects on Chinese agriculture, but negative impacts ...
Climate change has significantly affected agricultural production. As one of China's most important ...
Extensive studies had been conducted to investigate the impacts of climate change on maize growth an...
Maize is the main crop in Northeast China (NEC), but is susceptible to climate variations. Using cou...
Climate has been changing in the last fifty years in China and will continue to change regardless an...
Climate change continues to have major impact on crop productivity all over the world. While many re...
When estimating climate change impact on crop yield, a typical assumption is constant elasticity of ...