© 2018 Elsevier Ltd Climate change and rising atmospheric carbon dioxide (CO2) concentrations are likely to alter tropical forest net primary productivity (NPP), potentially affecting soil C storage. We examined biochemical and physical changes in soil C fractions in a humid tropical forest where experimental litter manipulation changed total soil C stocks. We hypothesized that: (1.) low-density soil organic C (SOC) fractions are more responsive to altered litter inputs than mineral-associated SOC, because they cycle relatively rapidly. (2.) Any accumulation of mineral-associated SOC with litter addition is relatively stable (i.e. low leaching potential). (3.) Certain biomolecules, such as waxes (alkyl) and proteins (N-alkyl), form more sta...
Mechanisms of soil organic carbon (SOC) stability are still unclear in forest ecosystems. In order t...
Tropical forests play an important role in global carbon (C) cycling due to high primary productivit...
Stabilization of organic carbon in soils (SOC) depends on several soil properties, including the soi...
Soil organic carbon (SOC) dynamics represent a persisting uncertainty in our understanding of the gl...
Tropical forests contain a considerable fraction of the global soil carbon (C) stock, but the respon...
Increasing atmospheric CO$_2$ and temperature may increase forest productivity, including litterfall...
peer-reviewedSoil organic carbon (SOC) dynamics represent a persisting uncertainty in our understand...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Soil organic matter (SOM) in tropical forests is an important store of carbon (C) and nutrients. Alt...
Stabilization of soil organic carbon (SOC) against microbial decomposition depends on several soil p...
Tropical forest soils are a vital component of the global carbon (C) cycle and their response to env...
Background and aims: Changes in net primary productivity in response to climate change are likely t...
Tropical forests are a critical component of the global carbon cycle and their response to environme...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
Climate change is increasing the intensity of severe tropical storms and cyclones (also referred to ...
Mechanisms of soil organic carbon (SOC) stability are still unclear in forest ecosystems. In order t...
Tropical forests play an important role in global carbon (C) cycling due to high primary productivit...
Stabilization of organic carbon in soils (SOC) depends on several soil properties, including the soi...
Soil organic carbon (SOC) dynamics represent a persisting uncertainty in our understanding of the gl...
Tropical forests contain a considerable fraction of the global soil carbon (C) stock, but the respon...
Increasing atmospheric CO$_2$ and temperature may increase forest productivity, including litterfall...
peer-reviewedSoil organic carbon (SOC) dynamics represent a persisting uncertainty in our understand...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Soil organic matter (SOM) in tropical forests is an important store of carbon (C) and nutrients. Alt...
Stabilization of soil organic carbon (SOC) against microbial decomposition depends on several soil p...
Tropical forest soils are a vital component of the global carbon (C) cycle and their response to env...
Background and aims: Changes in net primary productivity in response to climate change are likely t...
Tropical forests are a critical component of the global carbon cycle and their response to environme...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
Climate change is increasing the intensity of severe tropical storms and cyclones (also referred to ...
Mechanisms of soil organic carbon (SOC) stability are still unclear in forest ecosystems. In order t...
Tropical forests play an important role in global carbon (C) cycling due to high primary productivit...
Stabilization of organic carbon in soils (SOC) depends on several soil properties, including the soi...