International audienceGlobal-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and nitrogen (N) cycles show that the model produces realistic estimates of presentday C and N stocks and fluxes, despite some regional biases. N availability strongly affects high-latitude foliage area and foliage N, limiting vegetation productivity and present-day high-latitude net C uptake. Anthropogenic N deposition is predicted to have increased net primary productivity due to increases in foliage area and foliage N, contributing 0.2-0.5 Pg C yr À1 to the 1990s global net C uptake. While O-CN's modeled global 1990s terrestrial net C uptake (2.4 Pg C yr À1) is similar to the estimate not accounting for anthropogenic N inputs an...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
151 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.In the second part of this th...
International audienceThe effects of nitrogen (N) constraints on future terrestrial carbon (C) dynam...
International audienceGlobal-scale results of the new O-CN terrestrial biosphere model coupling the ...
Global-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and nitroge...
Global-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and 3nitrog...
International audienceNitrogen (N) availability plays a key role in terrestrial biosphere dynamics. ...
Nitrogen (N) availability plays a key role in terrestrial biosphere dynamics. To understand and quan...
Understanding the degree to which nitrogen (N) availability limits land carbon (C) uptake under glob...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
The carbon cycle strongly interacts with the nitrogen cycle. Several observations show that the effe...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
151 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.In the second part of this th...
International audienceThe effects of nitrogen (N) constraints on future terrestrial carbon (C) dynam...
International audienceGlobal-scale results of the new O-CN terrestrial biosphere model coupling the ...
Global-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and nitroge...
Global-scale results of the new O-CN terrestrial biosphere model coupling the carbon (C) and 3nitrog...
International audienceNitrogen (N) availability plays a key role in terrestrial biosphere dynamics. ...
Nitrogen (N) availability plays a key role in terrestrial biosphere dynamics. To understand and quan...
Understanding the degree to which nitrogen (N) availability limits land carbon (C) uptake under glob...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
The carbon cycle strongly interacts with the nitrogen cycle. Several observations show that the effe...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
151 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.In the second part of this th...
International audienceThe effects of nitrogen (N) constraints on future terrestrial carbon (C) dynam...