Peatlands play an important role in the global carbon cycle and represent both an important stock of soil carbon and a substantial natural source of relevant greenhouse gases like CO2 and CH4. While it is known that the quality of organic matter affects microbial degradation and mineralization processes in peatlands, the manner in which the quality of peat organic matter affects the formation of CO2 and CH4 remains unclear. In this study we developed a fast and simple peat quality index in order to estimate its potential greenhouse gas formation by linking the thermo-degradability of peat with potential anaerobic CO2 and CH4 formation rates. Peat samples were obtained at several depths (0-40 cm) at four sampling locations from an acidic fen...
Tropical peatland ecosystems are a significant component of the global carbon cycle and feature a ra...
Large tracts of arctic and subarctic peatlands are underlain by permafrost. These peatlands store la...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Peatlands play an important role in the global carbon cycle and represent both an important stock of...
Peatlands store globally significant amounts of carbon and are important sources of the greenhouse g...
Tropical peatlands represent an important source of carbon dioxide (CO₂) and methane (CH₄) to the at...
Large areas of northern peatlands have been drained and afforested with conifers in the 20th century...
Background: Peatlands only cover a minor fraction of the global terrestrial surface, but due to drai...
Tropical peatlands represent an important source of carbon dioxide (CO₂) and methane (CH₄) to the at...
Large areas of northern peatlands have been drained and afforested with conifers in the 20th century...
Large areas of northern peatlands have been drained and afforested with conifers in the 20th century...
Tropical peatlands represent an important source of carbon dioxide (CO₂) and methane (CH₄) to the at...
Large tracts of arctic and subarctic peatlands are underlain by permafrost. These peatlands store la...
Tropical peatland ecosystems are a significant component of the global carbon cycle and feature a ra...
Tropical peatland ecosystems are a significant component of the global carbon cycle and feature a ra...
Tropical peatland ecosystems are a significant component of the global carbon cycle and feature a ra...
Large tracts of arctic and subarctic peatlands are underlain by permafrost. These peatlands store la...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Peatlands play an important role in the global carbon cycle and represent both an important stock of...
Peatlands store globally significant amounts of carbon and are important sources of the greenhouse g...
Tropical peatlands represent an important source of carbon dioxide (CO₂) and methane (CH₄) to the at...
Large areas of northern peatlands have been drained and afforested with conifers in the 20th century...
Background: Peatlands only cover a minor fraction of the global terrestrial surface, but due to drai...
Tropical peatlands represent an important source of carbon dioxide (CO₂) and methane (CH₄) to the at...
Large areas of northern peatlands have been drained and afforested with conifers in the 20th century...
Large areas of northern peatlands have been drained and afforested with conifers in the 20th century...
Tropical peatlands represent an important source of carbon dioxide (CO₂) and methane (CH₄) to the at...
Large tracts of arctic and subarctic peatlands are underlain by permafrost. These peatlands store la...
Tropical peatland ecosystems are a significant component of the global carbon cycle and feature a ra...
Tropical peatland ecosystems are a significant component of the global carbon cycle and feature a ra...
Tropical peatland ecosystems are a significant component of the global carbon cycle and feature a ra...
Large tracts of arctic and subarctic peatlands are underlain by permafrost. These peatlands store la...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...