Anthropogenic-driven changes in N and water availability are two of the most important factors determining soil C and N turnover in temperate grassland ecosystems. To gain insight into changes in soil aggregation and C and N dynamics in response to N and water addition, we collected soil samples from a field study conducted for 9 yr in a semiarid steppe grassland in Inner Mongolia, China. Three aggregate size classes (microaggregates, 2000 μm) were isolated and analyzed for their mass proportions, soil organic C (SOC), total N (TN), total extractable inorganic N (TIN), and stable isotope ratio of 13C relative to 12C (δ13C) and stable isotope ratio of 15N relative to 14N (δ15N) values. Water addition on average increased large macroaggregate...
Global change will lead to increases in regional precipitation and nitrogen (N) deposition in the se...
Sulfur (S) availability plays a vital role in driving functions of terrestrial ecosystems, which can...
The technique of 13C natural abundance provides new information that can be applied to study carbon ...
Ongoing increases in anthropogenic nitrogen (N) inputs have largely affected soil carbon (C) and nut...
Previous studies have observed that increased precipitation positively affects primary production in...
Cultivation in semiarid grasslands induces large changes in soil organic matter (SOM) stock. To bett...
The ongoing global change is multi-faceted, but the interactive effects of multiple drivers on the p...
The ongoing global change is multi-faceted, but the interactive effects of multiple drivers on persi...
This paper investigates effects of cropping abandonment and perennial grass growing on soil organic ...
China is experiencing a high level of atmospheric nitrogen (N) deposition, which greatly affects the...
Purpose: Although past studies have found well-constrained soil carbon (C)/nutrient ratios, the effe...
Soil contains many different C fractions which have diverse physical and chemical compositions. Exam...
Temperate grasslands in arid and semiarid regions cover about 40% of the total land area in China. S...
Global changes will modify future nutrient availability with implications for grassland biogeochemis...
Grassland ecosystems, which are known to be sensitive to climate change, have shown minimal response...
Global change will lead to increases in regional precipitation and nitrogen (N) deposition in the se...
Sulfur (S) availability plays a vital role in driving functions of terrestrial ecosystems, which can...
The technique of 13C natural abundance provides new information that can be applied to study carbon ...
Ongoing increases in anthropogenic nitrogen (N) inputs have largely affected soil carbon (C) and nut...
Previous studies have observed that increased precipitation positively affects primary production in...
Cultivation in semiarid grasslands induces large changes in soil organic matter (SOM) stock. To bett...
The ongoing global change is multi-faceted, but the interactive effects of multiple drivers on the p...
The ongoing global change is multi-faceted, but the interactive effects of multiple drivers on persi...
This paper investigates effects of cropping abandonment and perennial grass growing on soil organic ...
China is experiencing a high level of atmospheric nitrogen (N) deposition, which greatly affects the...
Purpose: Although past studies have found well-constrained soil carbon (C)/nutrient ratios, the effe...
Soil contains many different C fractions which have diverse physical and chemical compositions. Exam...
Temperate grasslands in arid and semiarid regions cover about 40% of the total land area in China. S...
Global changes will modify future nutrient availability with implications for grassland biogeochemis...
Grassland ecosystems, which are known to be sensitive to climate change, have shown minimal response...
Global change will lead to increases in regional precipitation and nitrogen (N) deposition in the se...
Sulfur (S) availability plays a vital role in driving functions of terrestrial ecosystems, which can...
The technique of 13C natural abundance provides new information that can be applied to study carbon ...