Tropical forests play a significant role in the global carbon cycle and global climate. However, tropical carbon cycling and the feedbacks from tropical ecosystems to the climate system remain critical uncertainties in the current generation of carbon–climate models. One of the major uncertainties comes from the lack of representation of phosphorus (P), currently believed to be the most limiting nutrient in tropical regions. Here we introduce P dynamics and C–N–P interactions into the CLM4-CN (Community Land Model version 4 with prognostic Carbon and Nitrogen) model and investigate the role of P cycling in controlling the productivity of tropical ecosystems. The newly developed CLM-CNP model includes all major biological and geochemical pr...
A widely accepted paradigm for lowland tropical forests is that phosphorus (P) commonly limits plant...
The effect of high precipitation regime in tropical forests is poorly known despite indications of i...
Tropical rain forests play a dominant role in global biosphere-atmosphere CO(2) exchange. Although c...
Abstract The biogeochemical processes of carbon (C), nitrogen (N), and phosphorous (P) are fully cou...
Global terrestrial models currently predict that the Amazon rainforest will continue to act as a car...
Most land surface models (LSMs), i.e. the land components of Earth system models (ESMs), include rep...
Most Land Surface Models (LSMs), the land components of Earth system models (ESMs), include represen...
International audienceLarge uncertainties in the susceptibility of tropical forest productivity to p...
Global terrestrial models currently predict that the Amazon rainforest will continue to act as a car...
Tropical ecosystems dominate the exchange of carbon dioxide between the atmosphere and terrestrial b...
A widely accepted paradigm for lowland tropical forests is that phosphorus (P) commonly limits plant...
The effect of high precipitation regime in tropical forests is poorly known despite indications of i...
Tropical rain forests play a dominant role in global biosphere-atmosphere CO(2) exchange. Although c...
Abstract The biogeochemical processes of carbon (C), nitrogen (N), and phosphorous (P) are fully cou...
Global terrestrial models currently predict that the Amazon rainforest will continue to act as a car...
Most land surface models (LSMs), i.e. the land components of Earth system models (ESMs), include rep...
Most Land Surface Models (LSMs), the land components of Earth system models (ESMs), include represen...
International audienceLarge uncertainties in the susceptibility of tropical forest productivity to p...
Global terrestrial models currently predict that the Amazon rainforest will continue to act as a car...
Tropical ecosystems dominate the exchange of carbon dioxide between the atmosphere and terrestrial b...
A widely accepted paradigm for lowland tropical forests is that phosphorus (P) commonly limits plant...
The effect of high precipitation regime in tropical forests is poorly known despite indications of i...
Tropical rain forests play a dominant role in global biosphere-atmosphere CO(2) exchange. Although c...