Recent advances in biologically based ecosystem models of the coupled terrestrial, hydrological, carbon, and nutrient cycles have provided new perspectives on the terrestrial biosphere’s behavior globally, over a range of time scales. We used the terrestrial ecosystem model Century to examine relationships between carbon, nitrogen, and water dynamics. The model, run to a quasi-steady-state, shows strong correlations between carbon, water, and nitrogen fluxes that lead to equilibration of wateryenergy and nitrogen limitation of net primary productivity. This occurs because as the water flux increases, the potentials for carbon uptake (photosynthesis), and inputs and losses of nitrogen, all increase. As the flux of carbon increases, the amoun...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
Nitrogen (N) and phosphorus (P) biogeochemical dynamics are crucial for the regulation of the terres...
Global-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and nitroge...
We used the terrestrial ecosystem model “Century” to evaluate the relative roles of water and nitrog...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Terrestrial ecosystems carbon and water cycles are tightly coupled through photosynthesis and evapot...
The efforts to explain the 'missing sink' for anthropogenic carbon dioxide (CO2) have included in re...
We use the terrestrial ecosystem model (TEM), a process-based model, to investigate how interactions...
The efforts to explain the 'missing sink' for anthropogenic carbon dioxide (CO<sub>2</sub>) have inc...
Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically established constrai...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
Author Posting. © American Geophysical Union, 2009. This article is posted here by permission of Am...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
Nitrogen (N) and phosphorus (P) biogeochemical dynamics are crucial for the regulation of the terres...
Global-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and nitroge...
We used the terrestrial ecosystem model “Century” to evaluate the relative roles of water and nitrog...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Terrestrial ecosystems carbon and water cycles are tightly coupled through photosynthesis and evapot...
The efforts to explain the 'missing sink' for anthropogenic carbon dioxide (CO2) have included in re...
We use the terrestrial ecosystem model (TEM), a process-based model, to investigate how interactions...
The efforts to explain the 'missing sink' for anthropogenic carbon dioxide (CO<sub>2</sub>) have inc...
Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically established constrai...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
Author Posting. © American Geophysical Union, 2009. This article is posted here by permission of Am...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
Nitrogen (N) and phosphorus (P) biogeochemical dynamics are crucial for the regulation of the terres...
Global-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and nitroge...