Aerated soils represent an important sink for atmospheric methane (CH4), due to the effect of methanotrophic bacteria, thus mitigating current atmospheric CH4 increases. Whilst rates of CH4 oxidation have been linked to types of vegetation cover, there has been no systematic investigation of the interaction between plants and soil in relation to the strength of the soil CH4 sink. We used quasi-continuous automated chamber measurements of soil CH4 and CO2 flux from soil collar treatments that selectively include root and ectomycorrhizal (ECM) mycelium to investigate the role of rhizosphere activity as well as the effects of other environmental drivers on CH4 uptake in a temperate coniferous forest soil. We also assessed the potential impact ...
Forest soils are the most important terrestrial sink of atmospheric methane (CH4). Climatic, soil an...
Soils play an important role in cycling of methane (CH4), a greenhouse gas contributing roughly 20% ...
We investigated turnover of methane (CH4) in soils from a poorly drained UK forest. In situ, this fo...
Background: Effects of elevated atmospheric CO2 concentrations on plant growth and associated C cycl...
Methane (CH₄) is an important anthropogenic greenhouse gas that can be produced and consumed by micr...
Well-drained, aerated soils are important sinks for atmospheric methane (CH4) via the process of CH4...
Forest soils host methanotrophic bacterial communities that make them a major methane sink worldwide...
While differences in greenhouse gas (GHG) fluxes between ecosystems can be explained to a certain de...
Forest soils are an important sink for atmospheric CH4 but the contribution of CH4 oxidation, produc...
The uptake of CH4 by well-drained soil plays a vital role in mitigating the atmospheric CH4, but the...
Summary—Carbon dioxide and methane are important greenhouse gases whose exchange rates between soils...
Thesis: S.B., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planetary...
Abstract Aerated topsoils are important sinks for atmospheric methane (CH4) via oxidation by CH4‐ox...
The impact of a warmer climate on CH4 fluxes from soils is highly uncertain, because soil warming ma...
Methane (CH4) is one the most important greenhouse gas and is responsible for approximatively 20% of...
Forest soils are the most important terrestrial sink of atmospheric methane (CH4). Climatic, soil an...
Soils play an important role in cycling of methane (CH4), a greenhouse gas contributing roughly 20% ...
We investigated turnover of methane (CH4) in soils from a poorly drained UK forest. In situ, this fo...
Background: Effects of elevated atmospheric CO2 concentrations on plant growth and associated C cycl...
Methane (CH₄) is an important anthropogenic greenhouse gas that can be produced and consumed by micr...
Well-drained, aerated soils are important sinks for atmospheric methane (CH4) via the process of CH4...
Forest soils host methanotrophic bacterial communities that make them a major methane sink worldwide...
While differences in greenhouse gas (GHG) fluxes between ecosystems can be explained to a certain de...
Forest soils are an important sink for atmospheric CH4 but the contribution of CH4 oxidation, produc...
The uptake of CH4 by well-drained soil plays a vital role in mitigating the atmospheric CH4, but the...
Summary—Carbon dioxide and methane are important greenhouse gases whose exchange rates between soils...
Thesis: S.B., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planetary...
Abstract Aerated topsoils are important sinks for atmospheric methane (CH4) via oxidation by CH4‐ox...
The impact of a warmer climate on CH4 fluxes from soils is highly uncertain, because soil warming ma...
Methane (CH4) is one the most important greenhouse gas and is responsible for approximatively 20% of...
Forest soils are the most important terrestrial sink of atmospheric methane (CH4). Climatic, soil an...
Soils play an important role in cycling of methane (CH4), a greenhouse gas contributing roughly 20% ...
We investigated turnover of methane (CH4) in soils from a poorly drained UK forest. In situ, this fo...