Increasing demand for food and bioenergy has altered the global landscape dramatically in recent years. Land use and land cover change affects the environmental system in many ways through biophysical and biogeochemical mechanisms. In this study, we evaluate the impacts of land use and land cover change driven by recent crop expansion and conversion on the water budget, carbon exchange, and carbon storage in the Midwest USA. A dynamic global vegetation model was used to simulate and examine the impacts of landscape change in a historical case based on crop distribution data from the United States Department of Agriculture National Agricultural Statistics Services. The simulation results indicate that recent crop expansion not only decreased...
<div><p>Likely changes in precipitation (P) and potential evapotranspiration (PET) resulting from po...
Land use change for bioenergy feedstocks is likely to intensify as energy demand rises simultaneousl...
A growing world population and climate change are expected to influence future agricultural producti...
Increasing demand for food and bioenergy has altered the global landscape dramatically in recent yea...
To meet emerging bioenergy demands, significant areas of the large-scale agricultural landscape of t...
Many flux-based data and related models indicate that the United States is currently a strong carbon...
Land Use and Land Cover (LULC) change, such as conversion of natural vegetation into agricultural la...
<div><p>Perennial cellulosic feedstocks may have potential to reduce life-cycle greenhouse gas (GHG)...
To meet emerging bioenergy demands, significant areas of the large-scale agricultural landscape of t...
To meet emerging bioenergy demands, significant areas of the large-scale agricultural landscape of t...
The impact of land-use change and land management on global carbon fluxes is assessed using a variet...
Humans have and are likely to continue to dramatically alter both the global landscape through the c...
Land use and climate changes both affect terrestrial ecosystems. Here, we used three combinations of...
Increases of global demand for agricultural production and global warming affect fragile lands. Cult...
Increases of global demand for agricultural production and global warming affect fragile lands. Cult...
<div><p>Likely changes in precipitation (P) and potential evapotranspiration (PET) resulting from po...
Land use change for bioenergy feedstocks is likely to intensify as energy demand rises simultaneousl...
A growing world population and climate change are expected to influence future agricultural producti...
Increasing demand for food and bioenergy has altered the global landscape dramatically in recent yea...
To meet emerging bioenergy demands, significant areas of the large-scale agricultural landscape of t...
Many flux-based data and related models indicate that the United States is currently a strong carbon...
Land Use and Land Cover (LULC) change, such as conversion of natural vegetation into agricultural la...
<div><p>Perennial cellulosic feedstocks may have potential to reduce life-cycle greenhouse gas (GHG)...
To meet emerging bioenergy demands, significant areas of the large-scale agricultural landscape of t...
To meet emerging bioenergy demands, significant areas of the large-scale agricultural landscape of t...
The impact of land-use change and land management on global carbon fluxes is assessed using a variet...
Humans have and are likely to continue to dramatically alter both the global landscape through the c...
Land use and climate changes both affect terrestrial ecosystems. Here, we used three combinations of...
Increases of global demand for agricultural production and global warming affect fragile lands. Cult...
Increases of global demand for agricultural production and global warming affect fragile lands. Cult...
<div><p>Likely changes in precipitation (P) and potential evapotranspiration (PET) resulting from po...
Land use change for bioenergy feedstocks is likely to intensify as energy demand rises simultaneousl...
A growing world population and climate change are expected to influence future agricultural producti...