1. Nitrogen (N) deposition and land-use practice (e.g. mowing) could have profound effects on soil respiration. However, the changes in other ecosystem components, such as plant functional groups (PFGs), may control soil carbon (C) efflux response to long term global change. 2. A 10-year (2005-2014) field experiment was conducted with both N addition (10g N m-2 yr-1) and mowing (once a year) in a northern Chinese temperate grassland. We collected continuous data on soil respiration over 10 years accompanied with data on abiotic and biotic factors, and attempted to determine (i) the temporal variation in soil respiration and its responses to N addition and mowing, (ii) the regulation of soil respiration by PFGs and the underlying long-term m...
1. Nitrogen (N) deposition not only alters the physiological processes of individual plant, but also...
1. Nitrogen (N) deposition not only alters the physiological processes of individual plant, but also...
Knowledge of the impact of N enrichment on soil respiration components is critical for understanding...
1. Nitrogen (N) deposition and land-use practice (e.g. mowing) could have profound effects on soil r...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
1. Nitrogen (N) deposition not only alters the physiological processes of individual plant, but also...
1. Nitrogen (N) deposition not only alters the physiological processes of individual plant, but also...
Knowledge of the impact of N enrichment on soil respiration components is critical for understanding...
1. Nitrogen (N) deposition and land-use practice (e.g. mowing) could have profound effects on soil r...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
Changes in water and nitrogen (N) availability due to climate change and atmospheric N deposition co...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
1. Most grasslands in the world, including the semi-arid steppe in China, are threatened by nitrogen...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
Terrestrial ecosystems worldwide are receiving increasing amounts of biologically reactive nitrogen ...
1. Nitrogen (N) deposition not only alters the physiological processes of individual plant, but also...
1. Nitrogen (N) deposition not only alters the physiological processes of individual plant, but also...
Knowledge of the impact of N enrichment on soil respiration components is critical for understanding...