Aboveground litter production in forests is likely to increase as a consequence of elevated atmospheric carbon dioxide (CO2) concentrations, rising temperatures, and shifting rainfall patterns. As litterfall represents a major flux of carbon from vegetation to soil, changes in litter inputs are likely to have wide-reaching consequences for soil carbon dynamics. Such disturbances to the carbon balance may be particularly important in the tropics because tropical forests store almost 30% of the global soil carbon, making them a critical component of the global carbon cycle; nevertheless, the effects of increasing aboveground litter production on belowground carbon dynamics are poorly understood. We used long-term, large-scale monthly litter r...
Soil organic carbon (SOC) dynamics represent a persisting uncertainty in our understanding of the gl...
1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance of tropic...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Tropical forests are a critical component of the global carbon cycle and their response to environme...
Increasing atmospheric CO$_2$ and temperature may increase forest productivity, including litterfall...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
Climate models predict precipitation changes for much of the humid tropics, yet few studies have inv...
and other research outputs Increased litterfall in tropical forests boosts the transfer of soil CO¡s...
Tropical forests contain a considerable fraction of the global soil carbon (C) stock, but the respon...
The crucial role of tropical forests in the global carbon balance is underpinned by their extraordin...
Background and aims: Changes in net primary productivity in response to climate change are likely t...
Soil organic matter (SOM) in tropical forests is an important store of carbon (C) and nutrients. Alt...
Tropical forests play an important role in global carbon (C) cycling due to high primary productivit...
Global changes such as increasing atmospheric carbon dioxide (CO2) concentrations or climate change ...
Soil organic carbon (SOC) dynamics represent a persisting uncertainty in our understanding of the gl...
1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance of tropic...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...
Aboveground litter production in forests is likely to increase as a consequence of elevated atmosphe...
Tropical forests are a critical component of the global carbon cycle and their response to environme...
Increasing atmospheric CO$_2$ and temperature may increase forest productivity, including litterfall...
Global change is affecting primary productivity in forests worldwide, and this, in turn, will alter ...
Climate models predict precipitation changes for much of the humid tropics, yet few studies have inv...
and other research outputs Increased litterfall in tropical forests boosts the transfer of soil CO¡s...
Tropical forests contain a considerable fraction of the global soil carbon (C) stock, but the respon...
The crucial role of tropical forests in the global carbon balance is underpinned by their extraordin...
Background and aims: Changes in net primary productivity in response to climate change are likely t...
Soil organic matter (SOM) in tropical forests is an important store of carbon (C) and nutrients. Alt...
Tropical forests play an important role in global carbon (C) cycling due to high primary productivit...
Global changes such as increasing atmospheric carbon dioxide (CO2) concentrations or climate change ...
Soil organic carbon (SOC) dynamics represent a persisting uncertainty in our understanding of the gl...
1. The cycling of nutrients in litterfall is considered a key mechanism in the maintenance of tropic...
Land-use change in tropical forests can reduce biodiversity and ecosystem carbon (C) storage, but al...