Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial biosphere's carbon (C) balance. We assess global and biome-specific N deposition effects on C sequestration rates with the dynamic global vegetation model LPJ-GUESS. Modeled CN interactions are evaluated by comparing predictions of the C and CN version of the model with direct observations of C fluxes from 68 forest FLUXNET sites. N limitation on C uptake reduced overestimation of gross primary productivity for boreal evergreen needleleaf forests from 56% to 18%, presenting the greatest improvement among forest types. Relative N deposition effects on C sequestration (dC/dN) in boreal, temperate, and tropical sites ranged from 17 to 26kgCkgN(-1...
Nitrogen (N) availability plays a key role in terrestrial biosphere dynamics. To understand and quan...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
<p>Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestria...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
<p>Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestria...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Elevated nitrogen (N) deposition may increase net primary productivity in N-limited terrestrial ecos...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
Nitrogen (N) availability plays a key role in terrestrial biosphere dynamics. To understand and quan...
Nitrogen (N) availability plays a key role in terrestrial biosphere dynamics. To understand and quan...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
<p>Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestria...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
<p>Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestria...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Elevated nitrogen (N) deposition may increase net primary productivity in N-limited terrestrial ecos...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
Nitrogen (N) availability plays a key role in terrestrial biosphere dynamics. To understand and quan...
Nitrogen (N) availability plays a key role in terrestrial biosphere dynamics. To understand and quan...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...