Oxidation by soil bacteria is the only biological sink for atmospheric methane (CH4). There are substantial uncertainties regarding the global size of this sink, in part because the ecological controls of the involved processes are not well understood to date. We have investigated effects of severe summer drought and of nitrogen inputs (ammonium nitrate or cattle urine) on soil CH4 fluxes in a field experiment. Soil moisture was the most important factor regulating the temporal dynamics of CH4 fluxes. Simulated drought episodes altered the soil’s water balance throughout the year, increasing CH4 oxidation by 50% on an annual basis. N fertilizers exerted only small and transient effects at the ecosystem level. Laboratory incubations suggeste...
Soils play an important role in cycling of methane (CH4), a greenhouse gas contributing roughly 20% ...
Aerated topsoils are important sinks for atmospheric methane (CH4) via oxidation by CH4‐oxidizing ba...
Changes in frequency and intensity of drought events are anticipated in many areas of the world. In ...
Oxidation by soil bacteria is the only biological sink for atmospheric methane (CH4). There are subs...
Soil bacteria known as methanotrophs are the sole biological sink for atmospheric methane (CH4/, a p...
Boreal upland forests are generally considered methane (CH4) sinks due to the predominance of CH4 ox...
Soil ecosystems actively regulate climate by controlling methane and nitrous oxide fluxes into the a...
Boreal upland forests are generally considered methane (CH4) sinks due to the predominance of CH4 ox...
Dissertation (Ph.D.) University of Alaska Fairbanks, 1996Recently, atmospheric CH$\sb4$ concentratio...
© 2014 Dr. Kerryn Janette McTaggartFire rapidly changes terrestrial ecosystems by removing vegetatio...
The future size of the terrestrial methane (CH4) sink of upland soils remains uncertain, along with...
Aerated topsoils are important sinks for atmospheric methane (CH4) via oxidation by CH4‐oxidizing ba...
Soil bacteria known as methanotrophs are the sole biological sink for atmospheric methane (CH<sub>4...
The future size of the terrestrial methane (CH4) sink of upland soils remains uncertain, along with...
In humid ecosystems, the rate of methane (CH4) oxidation by soil-dwelling methane-oxidizing bacteria...
Soils play an important role in cycling of methane (CH4), a greenhouse gas contributing roughly 20% ...
Aerated topsoils are important sinks for atmospheric methane (CH4) via oxidation by CH4‐oxidizing ba...
Changes in frequency and intensity of drought events are anticipated in many areas of the world. In ...
Oxidation by soil bacteria is the only biological sink for atmospheric methane (CH4). There are subs...
Soil bacteria known as methanotrophs are the sole biological sink for atmospheric methane (CH4/, a p...
Boreal upland forests are generally considered methane (CH4) sinks due to the predominance of CH4 ox...
Soil ecosystems actively regulate climate by controlling methane and nitrous oxide fluxes into the a...
Boreal upland forests are generally considered methane (CH4) sinks due to the predominance of CH4 ox...
Dissertation (Ph.D.) University of Alaska Fairbanks, 1996Recently, atmospheric CH$\sb4$ concentratio...
© 2014 Dr. Kerryn Janette McTaggartFire rapidly changes terrestrial ecosystems by removing vegetatio...
The future size of the terrestrial methane (CH4) sink of upland soils remains uncertain, along with...
Aerated topsoils are important sinks for atmospheric methane (CH4) via oxidation by CH4‐oxidizing ba...
Soil bacteria known as methanotrophs are the sole biological sink for atmospheric methane (CH<sub>4...
The future size of the terrestrial methane (CH4) sink of upland soils remains uncertain, along with...
In humid ecosystems, the rate of methane (CH4) oxidation by soil-dwelling methane-oxidizing bacteria...
Soils play an important role in cycling of methane (CH4), a greenhouse gas contributing roughly 20% ...
Aerated topsoils are important sinks for atmospheric methane (CH4) via oxidation by CH4‐oxidizing ba...
Changes in frequency and intensity of drought events are anticipated in many areas of the world. In ...