Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of carbon sequestration, the geographical spread and magnitude of this sink are however hotly debated. Photosynthesis determines the total C uptake of terrestrial ecosystems and is a major flux of the global C balance. We contribute to the discussion on enhanced C sequestration by analyzing the influence of nitrogen (N) deposition on photosynthetic capacity (A(max)) of forest canopies. Eddy covariance measurements of net exchange of carbon provide estimates of gross primary production, from which A(max) is derived with a novel approach. Canopy Amax is combined with modeled N deposition, environmental variables and stand characteristics to study ...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...
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 ...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
[1] Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
[1] Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers...
The drivers of terrestrial carbon sequestration, as well as the geographical spread and magnitude of...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
Elevated nitrogen (N) deposition may increase net primary productivity in N-limited terrestrial ecos...
In many forest ecosystems, nitrogen (N) deposition enhances plant uptake of carbon dioxide, thus red...
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...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...
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 ...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
[1] Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
[1] Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers...
The drivers of terrestrial carbon sequestration, as well as the geographical spread and magnitude of...
Global terrestrial carbon (C) sequestration has increased over the last few decades. The drivers of ...
Elevated nitrogen (N) deposition may increase net primary productivity in N-limited terrestrial ecos...
In many forest ecosystems, nitrogen (N) deposition enhances plant uptake of carbon dioxide, thus red...
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...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...