Recently a considerable amount of effort has been put into quantifying how interactions of the carbon and nitrogen cycle affect future terrestrial carbon sinks. Dynamic vegetation models, representing the nitrogen cycle with varying degree of complexity, have shown diverging constraints of nitrogen dynamics on future carbon sequestration. In this study, we use LPJ-GUESS, a dynamic vegetation model employing a detailed individual- and patch-based representation of vegetation dynamics, to evaluate how population dynamics and resource competition between plant functional types, combined with nitrogen dynamics, have influenced the terrestrial carbon storage in the past and to investigate how terrestrial carbon and nitrogen dynamics might change...
Croplands are vital ecosystems for human well-being and provide important ecosystem services such as...
Croplands are vital ecosystems for human well-being and provide important ecosystem services such as...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
The effects of nitrogen (N) constraints on future terrestrial carbon (C) dynamics are investigated u...
Anthropogenic fossil fuel burning increases atmospheric carbon dioxide (CO2) concentration, which is...
The efforts to explain the 'missing sink' for anthropogenic carbon dioxide (CO2) have included in re...
A model of the interacting global carbon and nitrogen cycles (CQUESTN) is developed to explore the p...
Inclusion of fundamental ecological interactions between carbon and nitrogen cycles in the land comp...
The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representati...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Croplands are vital ecosystems for human well-being and provide important ecosystem services such as...
Croplands are vital ecosystems for human well-being and provide important ecosystem services such as...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
The effects of nitrogen (N) constraints on future terrestrial carbon (C) dynamics are investigated u...
Anthropogenic fossil fuel burning increases atmospheric carbon dioxide (CO2) concentration, which is...
The efforts to explain the 'missing sink' for anthropogenic carbon dioxide (CO2) have included in re...
A model of the interacting global carbon and nitrogen cycles (CQUESTN) is developed to explore the p...
Inclusion of fundamental ecological interactions between carbon and nitrogen cycles in the land comp...
The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representati...
Abstract. Terrestrial carbon (C) sequestration is limited by nitrogen (N), an empirically establishe...
Croplands are vital ecosystems for human well-being and provide important ecosystem services such as...
Croplands are vital ecosystems for human well-being and provide important ecosystem services such as...
Interactions between the terrestrial carbon (C) and nitrogen (N) cycles shape the response of ecosys...