Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling in terrestrial biomes over the next century. However, the interactive effects of warming and N deposition on soil N mineralization in temperate grasslands are poorly understood.A field manipulation experiment was conducted to examine the effects of warming and N addition on soil N cycling in a temperate grassland of northeastern China from 2007 to 2009. Soil samples were incubated at a constant temperature and moisture, from samples collected in the field. The results showed that both warming and N addition significantly stimulated soil net N mineralization rate and net nitrification rate. Combined warming and N addition caused an interactive...
The mineralization (or decomposition) processes of soil organic matter (SOM), from organic to inorga...
Winter air temperatures are projected to increase in the temperate zone, whereas snow cover is proje...
Knowledge of the impact of N enrichment on soil respiration components is critical for understanding...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Background: Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soi...
Climate warming and atmospheric nitrogen (N) deposition are known to influence ecosystem structure a...
Climate warming and atmospheric nitrogen (N) deposition are known to influence ecosystem structure a...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
Understanding how grasslands are affected by a long-term increase in temperature is crucial to predi...
Changes to global climate patterns have the potential to alter the structure of soil microbial commu...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
<div><h3>Background</h3><p>Understanding how grasslands are affected by a long-term increase in temp...
The responses of soil microbes to global warming and nitrogen enrichment can profoundly affect terre...
Soil respiration, R-s, is strongly controlled by water availability in semiarid grasslands. However,...
Effects of soil freezing on nitrogen (N) mineralization have been the subject of increased attention...
The mineralization (or decomposition) processes of soil organic matter (SOM), from organic to inorga...
Winter air temperatures are projected to increase in the temperate zone, whereas snow cover is proje...
Knowledge of the impact of N enrichment on soil respiration components is critical for understanding...
Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soil N cycling ...
Background: Both climate warming and atmospheric nitrogen (N) deposition are predicted to affect soi...
Climate warming and atmospheric nitrogen (N) deposition are known to influence ecosystem structure a...
Climate warming and atmospheric nitrogen (N) deposition are known to influence ecosystem structure a...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
Understanding how grasslands are affected by a long-term increase in temperature is crucial to predi...
Changes to global climate patterns have the potential to alter the structure of soil microbial commu...
Soils in the alpine grassland store a large amount of nitrogen (N) due to slow decomposition. Howeve...
<div><h3>Background</h3><p>Understanding how grasslands are affected by a long-term increase in temp...
The responses of soil microbes to global warming and nitrogen enrichment can profoundly affect terre...
Soil respiration, R-s, is strongly controlled by water availability in semiarid grasslands. However,...
Effects of soil freezing on nitrogen (N) mineralization have been the subject of increased attention...
The mineralization (or decomposition) processes of soil organic matter (SOM), from organic to inorga...
Winter air temperatures are projected to increase in the temperate zone, whereas snow cover is proje...
Knowledge of the impact of N enrichment on soil respiration components is critical for understanding...