Soil respiration (SR) plays an important role in the global carbon cycle. The widespread and continued conversion of tropical forests to plantations is expected to drastically alter CO2 production in soil, with significant consequences for atmospheric concentrations of this crucial greenhouse gas. In Southeast Asia, rubber plantations are among the most widespread monoculture tree plantations. However, knowledge of how SR differs in rubber plantations compared to natural forests is scarce. In this study, surface CO2 fluxes and soil CO2 concentrations (at 5 cm, 10 cm, 30 cm and 70 cm depths) were measured at regular intervals over a one-year period along slopes at three sites in paired natural tropical forests and mature rubber plantations. ...
Understanding the impacts of nitrogen (N) addition on soil respiration (RS) and its temperature sens...
Tropical forests have been facing rapid degradation in recent decades, which alters pristine primary...
Assessing the impact of plantation on microbial respiration (MR) is vitally important to understand ...
Natural rubber is a valuable source of income in many tropical countries and rubber trees are increa...
Large-scale conversion of natural forest to rubber plantations has taken place for decades in Southe...
Replacement of forest by agricultural systems is a major factor accelerating the emissions of greenh...
Soil respiration (SR) in forests contributes significant emissions of carbon from terrestrial ecosys...
<div><p>Forest-to-rubber plantation conversion is an important land-use change in the tropical regio...
Forest-to-rubber plantation conversion is an important land-use change in the tropical region, for w...
China possesses large areas of plantation forests which take up great quantities of carbon. However,...
Forest-to-rubber plantation conversion is an important land-use change in the tropical region, for w...
Significant CO2 fluxes from snow-covered soils occur in cold biomes. However, little is known about ...
Significant CO2 fluxes from snow-covered soils occur in cold biomes. However, little is known about...
Land-use change in tropical peatland potentially results in a large amount of carbon dioxide (CO2) e...
Aims Soil respiration (Rs) is a major process controlling soil carbon loss in forest ecosystems. How...
Understanding the impacts of nitrogen (N) addition on soil respiration (RS) and its temperature sens...
Tropical forests have been facing rapid degradation in recent decades, which alters pristine primary...
Assessing the impact of plantation on microbial respiration (MR) is vitally important to understand ...
Natural rubber is a valuable source of income in many tropical countries and rubber trees are increa...
Large-scale conversion of natural forest to rubber plantations has taken place for decades in Southe...
Replacement of forest by agricultural systems is a major factor accelerating the emissions of greenh...
Soil respiration (SR) in forests contributes significant emissions of carbon from terrestrial ecosys...
<div><p>Forest-to-rubber plantation conversion is an important land-use change in the tropical regio...
Forest-to-rubber plantation conversion is an important land-use change in the tropical region, for w...
China possesses large areas of plantation forests which take up great quantities of carbon. However,...
Forest-to-rubber plantation conversion is an important land-use change in the tropical region, for w...
Significant CO2 fluxes from snow-covered soils occur in cold biomes. However, little is known about ...
Significant CO2 fluxes from snow-covered soils occur in cold biomes. However, little is known about...
Land-use change in tropical peatland potentially results in a large amount of carbon dioxide (CO2) e...
Aims Soil respiration (Rs) is a major process controlling soil carbon loss in forest ecosystems. How...
Understanding the impacts of nitrogen (N) addition on soil respiration (RS) and its temperature sens...
Tropical forests have been facing rapid degradation in recent decades, which alters pristine primary...
Assessing the impact of plantation on microbial respiration (MR) is vitally important to understand ...