Peatlands, with high spatial variability in ecotypes and microforms, constitute a significant part of the boreal landscape and play an important role in the global carbon (C) cycle. However, the effects of this peatland heterogeneity within the boreal landscape are rarely quantified. Here, we use field-based measurements, high-resolution land cover classification, and biogeochemical and atmospheric models to estimate the atmosphere-ecosystem C fluxes and the corresponding radiative effect (RE) for a boreal landscape (Kaamanen) in northern Finland. Our result shows that the Kaamanen catchment currently functioned as a sink of carbon dioxide (CO2) and a source of methane (CH4). Peatlands (26% of the area) contributed 22% of the total CO2 upta...
We studied carbon dynamics on various surface parts of a highly patterned fen, typical in northern F...
The carbon (C) balance of boreal peatlands is mainly the sum of three different C fluxes: carbon dio...
International audiencePeatlands are a highly effective natural carbon sink. However, the future of t...
Peatlands, with high spatial variability in ecotypes and microforms, constitute a significant part o...
Peatlands, with high spatial variability in ecotypes and microforms, constitute a significant part o...
Peatlands form part of the boreal landscapes exhibiting diverse types and microforms that have diffe...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Natural peatlands accumulate carbon (C) and nitrogen (N). They affect the global climate by binding ...
Climate change mitigation requires countries to report their annual greenhouse gas (GHG) emissions a...
The boreal biome exchanges large amounts of carbon (C) and greenhouse gases (GHGs) with the atmosphe...
Peatlands cover only 3% of the Earth's land surface but boreal and subarctic peatlands store about 1...
The subarctic landscape consists of a mosaic of forest, peatland, and aquatic ecosystems and their e...
Non-growing season greenhouse gas emissions are still underrepresented in observation systems as wel...
To be able to predict the strength of climate change and its consequences for mankind, it is of majo...
Pristine boreal mires are known as substantial sinks of carbon dioxide (CO2) and net emitters of met...
We studied carbon dynamics on various surface parts of a highly patterned fen, typical in northern F...
The carbon (C) balance of boreal peatlands is mainly the sum of three different C fluxes: carbon dio...
International audiencePeatlands are a highly effective natural carbon sink. However, the future of t...
Peatlands, with high spatial variability in ecotypes and microforms, constitute a significant part o...
Peatlands, with high spatial variability in ecotypes and microforms, constitute a significant part o...
Peatlands form part of the boreal landscapes exhibiting diverse types and microforms that have diffe...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Natural peatlands accumulate carbon (C) and nitrogen (N). They affect the global climate by binding ...
Climate change mitigation requires countries to report their annual greenhouse gas (GHG) emissions a...
The boreal biome exchanges large amounts of carbon (C) and greenhouse gases (GHGs) with the atmosphe...
Peatlands cover only 3% of the Earth's land surface but boreal and subarctic peatlands store about 1...
The subarctic landscape consists of a mosaic of forest, peatland, and aquatic ecosystems and their e...
Non-growing season greenhouse gas emissions are still underrepresented in observation systems as wel...
To be able to predict the strength of climate change and its consequences for mankind, it is of majo...
Pristine boreal mires are known as substantial sinks of carbon dioxide (CO2) and net emitters of met...
We studied carbon dynamics on various surface parts of a highly patterned fen, typical in northern F...
The carbon (C) balance of boreal peatlands is mainly the sum of three different C fluxes: carbon dio...
International audiencePeatlands are a highly effective natural carbon sink. However, the future of t...