Global terrestrial nitrogen (N) and phosphorus (P) cycles are coupled to the global carbon (C) cycle for net primary production (NPP), plant C allocation, and decomposition of soil organic matter, but N and P have distinct pathways of inputs and losses. Current C-nutrient models exhibit large uncertainties in their estimates of pool sizes, fluxes, and turnover rates of nutrients, due to a lack of consistent global data for evaluating the models. In this study, we present a new model-data fusion framework called the Global Observation-based Land-ecosystems Utilization Model of Carbon, Nitrogen and Phosphorus (GOLUM-CNP) that combines the CARbon DAta MOdel fraMework (CARDAMOM) data-constrained C-cycle analysis with spatially explicit data-dri...
Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically established constrai...
The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representati...
Nitrogen (N) and phosphorus (P) availability regulate plant productivity throughout the terrestrial ...
Global terrestrial nitrogen (N) and phosphorus (P) cycles are coupled to the global carbon (C) cycl...
The availability of phosphorus (P) and nitrogen (N) constrains the ability of ecosystems to use reso...
Abstract: Plant biomass production (BP), nitrogen uptake (Nup) and their ratio, and nitrogen use eff...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
Understanding the degree to which nitrogen (N) availability limits land carbon (C) uptake under glob...
Most land surface models (LSMs), i.e. the land components of Earth system models (ESMs), include rep...
Over the past several decades, the land modeling community has recognized the importance of nutrient...
Most Earth system models (ESMs) do not explicitly represent the carbon (C) costs of plant nutrient a...
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 dynamics of terrestrial ecosystems are shaped by the coupled cycles of carbon, nitrogen and phos...
Terrestrial carbon (C) cycle models applied for climate projections simulate a strong increase in ne...
Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically established constrai...
The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representati...
Nitrogen (N) and phosphorus (P) availability regulate plant productivity throughout the terrestrial ...
Global terrestrial nitrogen (N) and phosphorus (P) cycles are coupled to the global carbon (C) cycl...
The availability of phosphorus (P) and nitrogen (N) constrains the ability of ecosystems to use reso...
Abstract: Plant biomass production (BP), nitrogen uptake (Nup) and their ratio, and nitrogen use eff...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
Understanding the degree to which nitrogen (N) availability limits land carbon (C) uptake under glob...
Most land surface models (LSMs), i.e. the land components of Earth system models (ESMs), include rep...
Over the past several decades, the land modeling community has recognized the importance of nutrient...
Most Earth system models (ESMs) do not explicitly represent the carbon (C) costs of plant nutrient a...
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 dynamics of terrestrial ecosystems are shaped by the coupled cycles of carbon, nitrogen and phos...
Terrestrial carbon (C) cycle models applied for climate projections simulate a strong increase in ne...
Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically established constrai...
The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representati...
Nitrogen (N) and phosphorus (P) availability regulate plant productivity throughout the terrestrial ...