Predictive understanding of northern peatland hydrology is a necessary precursor to understanding the fate of massive carbon stores in these systems under the influence of present and future climate change. Current models have begun to address microtopographic controls on peatland hydrology, but none have included a prognostic calculation of peatland water table depth for a vegetated wetland, independent of prescribed regional water tables. We introduce here a new configuration of the Community Land Model (CLM) which includes a fully prognostic water table calculation for a vegetated peatland. Our structural and process changes to CLM focus on modifications needed to represent the hydrologic cycle of bogs environment with perched water tabl...
Peatlands store approximately 30% of global soil carbon, most in moss-dominated bogs. Future climati...
Hydrology controls the physical, chemical and biological processes in peatlands and hence could be t...
The Holocene Peat Model simulates peatland coupled carbon and water cycling to estimate long-term pe...
The water content of the topsoil is one of the key factors controlling biogeochemical processes, gre...
Northern peatlands are a terrestrial carbon store, with an annual sink of 0.1 Pg C yr−1 and a total ...
Northern peatlands store approximately one-third of the terrestrial soil carbon (C), although they c...
Peatland ecosystems store between 200 and 450 Gt C (1015 gC). It is estimated that peatlands constit...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
International audienceThe importance of northern peatlands in the global carbon cycle has been recog...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
Northern peatlands are a major terrestrial carbon (C) store, with an annual sink of 0.1 Pg C yr-1 an...
Peatlands are important carbon reserves in terrestrial ecosystems. The microtopography of a peatland...
[1] Northern peatlands are significant stocks of terrestrial soil carbon, and it has been predicted ...
Drier conditions caused by drainage for infrastructure development, or associated with global climat...
Peatlands store approximately 30% of global soil carbon, most in moss-dominated bogs. Future climati...
Hydrology controls the physical, chemical and biological processes in peatlands and hence could be t...
The Holocene Peat Model simulates peatland coupled carbon and water cycling to estimate long-term pe...
The water content of the topsoil is one of the key factors controlling biogeochemical processes, gre...
Northern peatlands are a terrestrial carbon store, with an annual sink of 0.1 Pg C yr−1 and a total ...
Northern peatlands store approximately one-third of the terrestrial soil carbon (C), although they c...
Peatland ecosystems store between 200 and 450 Gt C (1015 gC). It is estimated that peatlands constit...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
International audienceThe importance of northern peatlands in the global carbon cycle has been recog...
We present a new model that simulates coupled carbon and water dynamics of northern peatlands at an ...
Northern peatlands are a major terrestrial carbon (C) store, with an annual sink of 0.1 Pg C yr-1 an...
Peatlands are important carbon reserves in terrestrial ecosystems. The microtopography of a peatland...
[1] Northern peatlands are significant stocks of terrestrial soil carbon, and it has been predicted ...
Drier conditions caused by drainage for infrastructure development, or associated with global climat...
Peatlands store approximately 30% of global soil carbon, most in moss-dominated bogs. Future climati...
Hydrology controls the physical, chemical and biological processes in peatlands and hence could be t...
The Holocene Peat Model simulates peatland coupled carbon and water cycling to estimate long-term pe...