The impacts of enhanced nitrogen (N) deposition on global forest carbon (C) sink and other ecosystem services may depend on whether N is deposited in reduced (mainly as ammonium) or oxidized forms (mainly as nitrate) and the subsequent fate of each. However, the fates of the two key reactive N forms and its contribution to forest C sink is unclear. We conducted ecosystem-scale paired 15N-labelling experiments in nine forests across China to quantify N retention fractions for both deposited ammonium and nitrate, including tropical and sub-tropical forests for the first time. By combining these results with four previous experiments from temperate Europe and North America, here we show that total ecosystem N retention is similar for ammonium ...
Despite long-term enhanced nitrogen (N) inputs, forests can retain considerable amounts of N. While ...
To study the long-term fate of deposited ammonium (NH4 +) in a Scots pine forest stand under high ni...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...
The impacts of enhanced nitrogen (N) deposition on global forest carbon (C) sink and other ecosystem...
International audienceThe impacts of enhanced nitrogen (N) deposition on the global forest carbon (C...
We added the stable isotope (15)N in the form of ((15)NH4)2SO4 and K(15)NO3 to forest ecosystems in ...
Despite chronically enhanced nitrogen (N) deposition to forest ecosystems in Europe and NE America, ...
The impacts of anthropogenic nitrogen (N) deposition on forest ecosystems depend in large part on it...
The impacts of increasing nitrogen (N) deposition on forest ecosystems, including on carbon (C) sequ...
National Basic Research Program of China 2010CB833504;CAS Strategic Priority Research Program Grant...
Assessment of nitrogen (N) saturation of forests is critical to evaluate how ecosystems will respond...
Nitrogen (N) deposition (NDEP) drives forest carbon (C) sequestration but the size of this effect is...
Forest ecosystems are vital to the terrestrial ecosystem’s carbon (C) cycle. The effects of nitrogen...
Despite long-term enhanced nitrogen (N) inputs, forests can retain considerable amounts of N. While ...
To study the long-term fate of deposited ammonium (NH4 +) in a Scots pine forest stand under high ni...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...
The impacts of enhanced nitrogen (N) deposition on global forest carbon (C) sink and other ecosystem...
International audienceThe impacts of enhanced nitrogen (N) deposition on the global forest carbon (C...
We added the stable isotope (15)N in the form of ((15)NH4)2SO4 and K(15)NO3 to forest ecosystems in ...
Despite chronically enhanced nitrogen (N) deposition to forest ecosystems in Europe and NE America, ...
The impacts of anthropogenic nitrogen (N) deposition on forest ecosystems depend in large part on it...
The impacts of increasing nitrogen (N) deposition on forest ecosystems, including on carbon (C) sequ...
National Basic Research Program of China 2010CB833504;CAS Strategic Priority Research Program Grant...
Assessment of nitrogen (N) saturation of forests is critical to evaluate how ecosystems will respond...
Nitrogen (N) deposition (NDEP) drives forest carbon (C) sequestration but the size of this effect is...
Forest ecosystems are vital to the terrestrial ecosystem’s carbon (C) cycle. The effects of nitrogen...
Despite long-term enhanced nitrogen (N) inputs, forests can retain considerable amounts of N. While ...
To study the long-term fate of deposited ammonium (NH4 +) in a Scots pine forest stand under high ni...
The carbon to nitrogen response of forest ecosystems depends on the possible occurrence of nitrogen ...