Grasslands cover about 40% of the ice-free global terrestrial surface, but their contribution to local and regional water and carbon fluxes and sensitivity to climatic perturbations such as drought remains uncertain. Here, we assess the direction and magnitude of net ecosystem carbon exchange (NEE) and its components, ecosystem carbon assimilation (A c) and ecosystem respiration (R E), in a southeastern United States grassland ecosystem subject to periodic drought and harvest using a combination of eddy-covariance measurements and model calculations. We modeled A c and evapotranspiration (ET) using a big-leaf canopy scheme in conjunction with ecophysiological and radiative transfer principles, and applied the model to assess the sensitivity...
There is great international concern over the increase of atmospheric carbon dioxide and its effect ...
Eddy-covariance measurements of net ecosystem carbon exchange (NEE) were carried out above a grazed...
Climate warming and management will likely affect carbon (C) fluxes of montane grassland ecosystems....
Grasslands cover about 40% of the ice-free global terrestrial surface, but their contribution to loc...
The rising frequency of extreme weather events and global warming are greatly challenging pastoral e...
International audienceIntra- and interannual variability of precipitation can lead to major modifica...
Intra- and interannual variability of precipitation can lead to major modifications of grassland pro...
The net exchanges of carbon dioxide, water vapor, and energy were examined in a perennial Colorado P...
A micrometeorological study was conducted from May to October in 1987 to evaluate the surface exchan...
Carbon (C) dynamics in grassland ecosystem contributes to regional and global fluxes in carbon dioxi...
Predicting net C balance under future global change scenarios requires a comprehensive understanding...
Grasslands and agroecosystems occupy one-third of the terrestrial area, but their contribution to th...
Eddy covariance measurements were carried out to document the seasonal and inter-annual variation in...
Using 139 flux studies, we addressed the variability of net ecosystem surface assimilation (A(smax))...
Recent evidences show that terrestrial biogeochemical models have large uncertainty in estimating cl...
There is great international concern over the increase of atmospheric carbon dioxide and its effect ...
Eddy-covariance measurements of net ecosystem carbon exchange (NEE) were carried out above a grazed...
Climate warming and management will likely affect carbon (C) fluxes of montane grassland ecosystems....
Grasslands cover about 40% of the ice-free global terrestrial surface, but their contribution to loc...
The rising frequency of extreme weather events and global warming are greatly challenging pastoral e...
International audienceIntra- and interannual variability of precipitation can lead to major modifica...
Intra- and interannual variability of precipitation can lead to major modifications of grassland pro...
The net exchanges of carbon dioxide, water vapor, and energy were examined in a perennial Colorado P...
A micrometeorological study was conducted from May to October in 1987 to evaluate the surface exchan...
Carbon (C) dynamics in grassland ecosystem contributes to regional and global fluxes in carbon dioxi...
Predicting net C balance under future global change scenarios requires a comprehensive understanding...
Grasslands and agroecosystems occupy one-third of the terrestrial area, but their contribution to th...
Eddy covariance measurements were carried out to document the seasonal and inter-annual variation in...
Using 139 flux studies, we addressed the variability of net ecosystem surface assimilation (A(smax))...
Recent evidences show that terrestrial biogeochemical models have large uncertainty in estimating cl...
There is great international concern over the increase of atmospheric carbon dioxide and its effect ...
Eddy-covariance measurements of net ecosystem carbon exchange (NEE) were carried out above a grazed...
Climate warming and management will likely affect carbon (C) fluxes of montane grassland ecosystems....