Dynamics of C and N in forest soils in the Nutrient Cycling and Soil Acidification Model (NUCSAM) are described by the transformation and decomposition of three organic matter compartments, litter, fermented material and humic material. These three compartments are allocated to the morphological distinguishable L, F and H horizons of the organic layer. Changes in the pools of these organic compartments are described with first order equations for decomposition and transformation. Rate constants for decomposition and transformation were derived by calibrating the model to measured organic matter pools in organic layers of a chrono-sequence of five first succession Scots pine stands between 15 and 120 years old. Simulated pools of organic mat...
A soil module was developed to improve on the ecosystem-scale simulations of forest models. The modu...
Element cycling and nutrient supply in forest ecosystems are of vital importance for short-term prod...
A process-based, biological model is presented that simulates soil nitrogen (N) mineralization and n...
International audienceDynamics of C and N in forest soils in the Nutrient Cycling and Soil Acidifica...
Recent observations indicate that long-term N additions can slow decomposition, leading to C accumul...
We applied the simulation model ROMUL of soil organic matter dynamics in order to analyse and predic...
We present a new decomposition model of C and N cycling in forest ecosystems that simulates N minera...
A soil community food web model was used to improve the understanding of what factors govern the min...
The dynamic model N14C simulates changes in the plant-soil dynamics of nitrogen and carbon, brought ...
NCSOIL simulates C and N transformations in 4 soil organic pools: Pool I labile, Pool I resistant, P...
DAISY, a mechanistic model for the simulation of crop production, soil water and N dynamics in agro-...
The objective of this research was to investigate possible destabilising effects of high deposition ...
The Nutrient Cycling and Soil Acidification Model (NUCSAM) was applied to a spruce site at Solling, ...
A catchment-scale mass-balance model of linked carbon and nitrogen cycling in ecosystems has been de...
Soil organic matter (SOM) is the result of the balance between decomposition and incorporation of de...
A soil module was developed to improve on the ecosystem-scale simulations of forest models. The modu...
Element cycling and nutrient supply in forest ecosystems are of vital importance for short-term prod...
A process-based, biological model is presented that simulates soil nitrogen (N) mineralization and n...
International audienceDynamics of C and N in forest soils in the Nutrient Cycling and Soil Acidifica...
Recent observations indicate that long-term N additions can slow decomposition, leading to C accumul...
We applied the simulation model ROMUL of soil organic matter dynamics in order to analyse and predic...
We present a new decomposition model of C and N cycling in forest ecosystems that simulates N minera...
A soil community food web model was used to improve the understanding of what factors govern the min...
The dynamic model N14C simulates changes in the plant-soil dynamics of nitrogen and carbon, brought ...
NCSOIL simulates C and N transformations in 4 soil organic pools: Pool I labile, Pool I resistant, P...
DAISY, a mechanistic model for the simulation of crop production, soil water and N dynamics in agro-...
The objective of this research was to investigate possible destabilising effects of high deposition ...
The Nutrient Cycling and Soil Acidification Model (NUCSAM) was applied to a spruce site at Solling, ...
A catchment-scale mass-balance model of linked carbon and nitrogen cycling in ecosystems has been de...
Soil organic matter (SOM) is the result of the balance between decomposition and incorporation of de...
A soil module was developed to improve on the ecosystem-scale simulations of forest models. The modu...
Element cycling and nutrient supply in forest ecosystems are of vital importance for short-term prod...
A process-based, biological model is presented that simulates soil nitrogen (N) mineralization and n...