Land surface models rarely incorporate the terrestrial phosphorus cycle and its interactions with the carbon cycle, despite the extensive scientific debate about the importance of nitrogen and phosphorus supply for future land carbon uptake. We describe a representation of the terrestrial phosphorus cycle for the land surface model ORCHIDEE, and evaluate it with data from nutrient manipulation experiments along a soil formation chronosequence in Hawaii. ORCHIDEE accounts for influence of nutritional state of vegetation on tissue nutrient concentrations, photosynthesis, plant growth, biomass allocation, biochemical (phosphatase-mediated) mineralization and biological nitrogen fixation. Changes in nutrient content (quality) of litter affect t...
The process-based biogeochemical model ORCHIDEE-GM is a version of ORCHIDEE land surface model that ...
Abstract The biogeochemical processes of carbon (C), nitrogen (N), and phosphorous (P) are fully cou...
Most Land Surface Models (LSMs), the land components of Earth system models (ESMs), include represen...
International audienceLand surface models rarely incorporate the terrestrial phosphorus cycle and it...
Land surface models rarely incorporate the terrestrial phosphorus cycle and its interactions with th...
The availability of phosphorus (P) and nitrogen (N) constrains the ability of ecosystems to use reso...
Our ability to understand the effect of nutrient limitation on ecosystem productivity is key to the ...
Our ability to understand the effect of nutrient limitation on ecosystem productivity is key to the ...
In old and heavily weathered soils, the availability of P might be so small that the primary product...
Phosphorus (P) is a key and a limiting nutrient in ecosystems and plays an important role in many ph...
Nitrogen (N) and phosphorus (P) biogeochemical dynamics are crucial for the regulation of the terres...
The process-based biogeochemical model ORCHIDEE-GM is a version of ORCHIDEE land surface model that ...
Abstract The biogeochemical processes of carbon (C), nitrogen (N), and phosphorous (P) are fully cou...
Most Land Surface Models (LSMs), the land components of Earth system models (ESMs), include represen...
International audienceLand surface models rarely incorporate the terrestrial phosphorus cycle and it...
Land surface models rarely incorporate the terrestrial phosphorus cycle and its interactions with th...
The availability of phosphorus (P) and nitrogen (N) constrains the ability of ecosystems to use reso...
Our ability to understand the effect of nutrient limitation on ecosystem productivity is key to the ...
Our ability to understand the effect of nutrient limitation on ecosystem productivity is key to the ...
In old and heavily weathered soils, the availability of P might be so small that the primary product...
Phosphorus (P) is a key and a limiting nutrient in ecosystems and plays an important role in many ph...
Nitrogen (N) and phosphorus (P) biogeochemical dynamics are crucial for the regulation of the terres...
The process-based biogeochemical model ORCHIDEE-GM is a version of ORCHIDEE land surface model that ...
Abstract The biogeochemical processes of carbon (C), nitrogen (N), and phosphorous (P) are fully cou...
Most Land Surface Models (LSMs), the land components of Earth system models (ESMs), include represen...