Soil respiration (Rs), a key process in the terrestrial carbon cycle, is very sensitive to climate change. In this study, we synthesized 54 measurements of annual Rs and 171 estimates of Q10 value (the temperature sensitivity of soil respiration) in grasslands across China. We quantitatively analyzed their spatial patterns and controlling factors in five grassland types, including temperate typical steppe, temperate meadow steppe, temperate desert steppe, alpine grassland, and warm, tropical grassland. Results showed that the mean (±SE) annual Rs was 582.0±57.9 g C mg-2 yrg-1 across Chinese grasslands. Annual Rs significantly differed among grassland types, and was positively correlated with mean annual temperature, mean annual precipitatio...
Background and aims Soil respiration is the second-largest terrestrial carbon (C) flux, and soil tem...
The snow cover in temperate areas is undergoing significant changes, which may affect soil respirati...
It is important to accurately evaluate ecosystem respiration (RE) in the alpine grasslands of the Ti...
Soil respiration (Rs), a key process in the terrestrial carbon cycle, is very sensitive to climate c...
Understanding the sensitivity of soil respiration to temperature change and its impacting factors is...
Quantifying the temporal and spatial patterns of temperature sensitivity (Q10) of soil respiration (...
Soil respiration, one of the most important carbon fluxes in terrestrial ecosystems, is very sensiti...
Understanding the spatial variation of temperature sensitivity (i.e. Q<inf>10</inf>) of soil respira...
Little is known about how environmental factors modify spatiotemporal variations of soil respiration...
A two consecutive years' field experiment was carried out on four types of semiarid grassland along ...
Precipitation is a key environmental factor in determining ecosystem structure and function. Knowled...
There are variations in soil respiration across vegetation types; however, it is unclear which facto...
Current climate change (e.g., temperature and precipitation variations) profoundly influences terres...
In order to explore the response of soil respiration in grassland to global warming, we carried out ...
Soil respiration (R (s)) has become a central issue in global carbon cycle research. In this study, ...
Background and aims Soil respiration is the second-largest terrestrial carbon (C) flux, and soil tem...
The snow cover in temperate areas is undergoing significant changes, which may affect soil respirati...
It is important to accurately evaluate ecosystem respiration (RE) in the alpine grasslands of the Ti...
Soil respiration (Rs), a key process in the terrestrial carbon cycle, is very sensitive to climate c...
Understanding the sensitivity of soil respiration to temperature change and its impacting factors is...
Quantifying the temporal and spatial patterns of temperature sensitivity (Q10) of soil respiration (...
Soil respiration, one of the most important carbon fluxes in terrestrial ecosystems, is very sensiti...
Understanding the spatial variation of temperature sensitivity (i.e. Q<inf>10</inf>) of soil respira...
Little is known about how environmental factors modify spatiotemporal variations of soil respiration...
A two consecutive years' field experiment was carried out on four types of semiarid grassland along ...
Precipitation is a key environmental factor in determining ecosystem structure and function. Knowled...
There are variations in soil respiration across vegetation types; however, it is unclear which facto...
Current climate change (e.g., temperature and precipitation variations) profoundly influences terres...
In order to explore the response of soil respiration in grassland to global warming, we carried out ...
Soil respiration (R (s)) has become a central issue in global carbon cycle research. In this study, ...
Background and aims Soil respiration is the second-largest terrestrial carbon (C) flux, and soil tem...
The snow cover in temperate areas is undergoing significant changes, which may affect soil respirati...
It is important to accurately evaluate ecosystem respiration (RE) in the alpine grasslands of the Ti...