The closed-chamber method is the most common approach to determine CH4 fluxes in peatlands. The concentration change in the chamber is monitored over time, and the flux is usually calculated by the slope of a linear regression function. Theoretically, the gas exchange cannot be constant over time but has to decrease, when the concentration gradient between chamber headspace and soil air decreases. In this study, we test whether we can detect this non-linearity in the concentration change during the chamber closure with six air samples. We expect generally a low concentration gradient on dry sites (hummocks) and thus the occurrence of exponential concentration changes in the chamber due to a quick equilibrium of gas concentrations between pe...
Methane fluxes measured in a eutrophic peat meadow in The Netherlands dominated by vascular plants s...
We measured methane fluxes of a patterned bog situated in Siikaneva in southern Finland from six dif...
Peatlands are important sources of atmospheric CH4, a potent greenhouse gas. Identifying the control...
The closed-chamber method is the most common approach to determine CH4 fluxes in peatlands. The conc...
The closed chamber technique is widely used to measure the exchange of methane (CH4) and carbon diox...
International audienceClosed (non-steady state) chambers are widely used for quantifying carbon diox...
Closed (non-steady state) chambers are widely used for quantifying carbon dioxide (CO2) fluxes betwe...
We measured methane (CH4) exchange rates with automatic chambers at the forest floor of a nutrient-r...
Accurate quantification of soil-atmosphere gas exchange is essential for understanding the magnitude...
Flux-chamber measurements of greenhouse gas exchanges between the soil and the atmosphere represent ...
The paper presents results of CH4 emission measurements at peatland with the application of the dyna...
The presented dataset contains chamber measurements of methane transport (mg CH₄ g dry plant mass-1 ...
Accurate quantification of soil-atmosphere gas exchange is essential for understanding the magnitude...
Methane (CH4) ebullition in northern peatlands is poorly quantified in part due to its high spatiote...
Northern peatlands are one of the largest natural sources of atmospheric methane (CH4), and it is im...
Methane fluxes measured in a eutrophic peat meadow in The Netherlands dominated by vascular plants s...
We measured methane fluxes of a patterned bog situated in Siikaneva in southern Finland from six dif...
Peatlands are important sources of atmospheric CH4, a potent greenhouse gas. Identifying the control...
The closed-chamber method is the most common approach to determine CH4 fluxes in peatlands. The conc...
The closed chamber technique is widely used to measure the exchange of methane (CH4) and carbon diox...
International audienceClosed (non-steady state) chambers are widely used for quantifying carbon diox...
Closed (non-steady state) chambers are widely used for quantifying carbon dioxide (CO2) fluxes betwe...
We measured methane (CH4) exchange rates with automatic chambers at the forest floor of a nutrient-r...
Accurate quantification of soil-atmosphere gas exchange is essential for understanding the magnitude...
Flux-chamber measurements of greenhouse gas exchanges between the soil and the atmosphere represent ...
The paper presents results of CH4 emission measurements at peatland with the application of the dyna...
The presented dataset contains chamber measurements of methane transport (mg CH₄ g dry plant mass-1 ...
Accurate quantification of soil-atmosphere gas exchange is essential for understanding the magnitude...
Methane (CH4) ebullition in northern peatlands is poorly quantified in part due to its high spatiote...
Northern peatlands are one of the largest natural sources of atmospheric methane (CH4), and it is im...
Methane fluxes measured in a eutrophic peat meadow in The Netherlands dominated by vascular plants s...
We measured methane fluxes of a patterned bog situated in Siikaneva in southern Finland from six dif...
Peatlands are important sources of atmospheric CH4, a potent greenhouse gas. Identifying the control...