Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected by local environmental and climatic factors, such as water table depth, microtopography, and the spatial heterogeneity of the vegetation communities present. There is a disconnect between the measurement scales for CH4 fluxes, which can be measured with chambers at one-meter resolution and eddy covariance towers at 100–1000 m, whereas model estimates are typically made at the ~100 km scale. Therefore, it is critical to upscale site level measurements to the larger scale for model comparison. As vegetation has a critical role in explaining the variability of CH4 fluxes across the tundra landscape, we tested whether remotely-sensed maps of veget...
Aims Despite multiple studies investigating the environmental controls on CH4 fluxes from arctic ...
The Arctic is warming at twice the rate of the global mean. This warming could further stimulate met...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
© 2017 by the author. Arctic tundra ecosystems are a major source of methane (CH 4 ), the variabilit...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
© 2017 by the author. Arctic tundra ecosystems are a major source of methane (CH 4 ), the variabilit...
Methane (CH4) emissions from Arctic tundra are an important feedback to global climate. Currently, m...
Methane (CH4) emissions from Arctic polygonal tundra are spatially heterogeneous due to the complex ...
Methane (CH4) emissions from Arctic polygonal tundra are spatially heterogeneous due to the complex ...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Aims Despite multiple studies investigating the environmental controls on CH4 fluxes from arctic ...
The Arctic is warming at twice the rate of the global mean. This warming could further stimulate met...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
© 2017 by the author. Arctic tundra ecosystems are a major source of methane (CH 4 ), the variabilit...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
Arctic tundra ecosystems are a major source of methane (CH4), the variability of which is affected b...
© 2017 by the author. Arctic tundra ecosystems are a major source of methane (CH 4 ), the variabilit...
Methane (CH4) emissions from Arctic tundra are an important feedback to global climate. Currently, m...
Methane (CH4) emissions from Arctic polygonal tundra are spatially heterogeneous due to the complex ...
Methane (CH4) emissions from Arctic polygonal tundra are spatially heterogeneous due to the complex ...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...
Aims Despite multiple studies investigating the environmental controls on CH4 fluxes from arctic ...
The Arctic is warming at twice the rate of the global mean. This warming could further stimulate met...
Quantifying landscape-scale methane (CH4) fluxes from boreal and arctic regions, and determining how...