Dynamic global vegetation models (DGVMs) are designed for the study of past, present and future vegetation patterns together with associated biogeochemical cycles and climate feedbacks. However, most DGVMs do not yet have detailed representations of permafrost and non-permafrost peatlands, which are an important store of carbon, particularly at high latitudes. We demonstrate a new implementation of peatland dynamics in a customized "Arctic" version of the LPJ-GUESS DGVM, simulating the long-term evolution of selected northern peatland ecosystems and assessing the effect of changing climate on peatland carbon balance. Our approach employs a dynamic multi-layer soil with representation of freeze-thaw processes and litter inputs from a dynamic...
The response of peatlands to changes in the climatic water budget is crucial to predicting potential...
Northern peatlands store approximately one-third of the terrestrial soil carbon (C), although they c...
International audienceThe importance of northern peatlands in the global carbon cycle has been recog...
Dynamic global vegetation models (DGVMs) are designed for the study of past, present and future vege...
Dynamic global vegetation models (DGVMs) are designed for the study of past, present and future vege...
The majority of the northern peatlands developed during the Holocene as a result of a positive mass ...
The majority of northern peatlands were initiated during the Holocene. Owing to their mass imbalance...
The majority of northern peatlands were initiated during the Holocene. Owing to their mass imbalance...
Most northern peatlands developed during the Holocene, sequestering large amounts of carbon in terre...
The development of northern high-latitude peatlands played an important role in the carbon (C) balan...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
Peatlands store large amounts of carbon in terrestrial ecosystems and they are vulnerable to recent ...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
Anticipated rates of climate change and increased land-use pressure will subject peatlands to distur...
The response of peatlands to changes in the climatic water budget is crucial to predicting potential...
Northern peatlands store approximately one-third of the terrestrial soil carbon (C), although they c...
International audienceThe importance of northern peatlands in the global carbon cycle has been recog...
Dynamic global vegetation models (DGVMs) are designed for the study of past, present and future vege...
Dynamic global vegetation models (DGVMs) are designed for the study of past, present and future vege...
The majority of the northern peatlands developed during the Holocene as a result of a positive mass ...
The majority of northern peatlands were initiated during the Holocene. Owing to their mass imbalance...
The majority of northern peatlands were initiated during the Holocene. Owing to their mass imbalance...
Most northern peatlands developed during the Holocene, sequestering large amounts of carbon in terre...
The development of northern high-latitude peatlands played an important role in the carbon (C) balan...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
Peatlands store large amounts of carbon in terrestrial ecosystems and they are vulnerable to recent ...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
Anticipated rates of climate change and increased land-use pressure will subject peatlands to distur...
The response of peatlands to changes in the climatic water budget is crucial to predicting potential...
Northern peatlands store approximately one-third of the terrestrial soil carbon (C), although they c...
International audienceThe importance of northern peatlands in the global carbon cycle has been recog...