Respiration of CO2 from soils (Rs) is a major component of the carbon cycle of ecosystems, but understanding is still poor of both the relative contributions of different respiratory sources to Rs, and the environmental factors that drive diurnal variations in Rs. We measured total and litter-free Rs at half-hourly intervals over full 24 h periods, and thereafter twice a month for 10 months in a tropical montane cloud forest (TMCF) in Peru. Total Rs declined by about 61% during the night as a result of variations in respiration rate in the litter, which were partly correlated with the soil surface air temperature. Most of the diurnal variation of Rs in this TMCF appears to be driven by respiration in the litter layer, which contributed 37% ...
Soil respiration (Rs) plays a key role in the carbon balance of forest ecosystems. There is growing ...
To simulate the effect of temperature on soil respiration rates, we translocated soil cores among fo...
Over two-thirds of terrestrial carbon is stored belowground and a significant amount of atmospheric ...
Respiration of CO2 from soils (Rs) is a major component of the carbon cycle of ecosystems, but under...
Respiration Of CO(2) from soils (Rs) is a major component of the carbon cycle of ecosystems, but und...
Soil respiration (RS) is a major flux in the global carbon (C) cycle. Responses of RS to changing en...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Soil respiration plays a significant role in the carbon cycle of Amazonian tropical forests, althoug...
Abstract Tropical forests are the largest contributors to global emissions of carbon dioxide (CO2) t...
Soil respiration represents an enormous output of carbon dioxide to the atmosphere. The possibility ...
We analysed soil respiration measurements made in seven distinctly different pristine rain forests i...
We analysed soil respiration measurements made in seven distinctly different pristine rain forests i...
To simulate the effect of temperature on soil respiration rates, we translocated soil cores among fo...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
To simulate the effect of temperature on soil respiration rates, we translocated soil cores among fo...
Soil respiration (Rs) plays a key role in the carbon balance of forest ecosystems. There is growing ...
To simulate the effect of temperature on soil respiration rates, we translocated soil cores among fo...
Over two-thirds of terrestrial carbon is stored belowground and a significant amount of atmospheric ...
Respiration of CO2 from soils (Rs) is a major component of the carbon cycle of ecosystems, but under...
Respiration Of CO(2) from soils (Rs) is a major component of the carbon cycle of ecosystems, but und...
Soil respiration (RS) is a major flux in the global carbon (C) cycle. Responses of RS to changing en...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Soil respiration plays a significant role in the carbon cycle of Amazonian tropical forests, althoug...
Abstract Tropical forests are the largest contributors to global emissions of carbon dioxide (CO2) t...
Soil respiration represents an enormous output of carbon dioxide to the atmosphere. The possibility ...
We analysed soil respiration measurements made in seven distinctly different pristine rain forests i...
We analysed soil respiration measurements made in seven distinctly different pristine rain forests i...
To simulate the effect of temperature on soil respiration rates, we translocated soil cores among fo...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
To simulate the effect of temperature on soil respiration rates, we translocated soil cores among fo...
Soil respiration (Rs) plays a key role in the carbon balance of forest ecosystems. There is growing ...
To simulate the effect of temperature on soil respiration rates, we translocated soil cores among fo...
Over two-thirds of terrestrial carbon is stored belowground and a significant amount of atmospheric ...