about
Tidal wetland stability in the face of human impacts and sea-level rise.The biogeography of ammonia-oxidizing bacterial communities in soil.Ecosystem response to elevated CO(2) levels limited by nitrogen-induced plant species shift.Responses of soil cellulolytic fungal communities to elevated atmospheric CO₂ are complex and variable across five ecosystems.Altered soil microbial community at elevated CO(2) leads to loss of soil carbon.How do Elevated CO2 and Nitrogen Addition Affect Functional Microbial Community Involved in Greenhouse Gas Flux in Salt Marsh System.Methane emissions from upland forest soils and vegetation.Contributions of organic and inorganic matter to sediment volume and accretion in tidal wetlands at steady state.Sensitivity of mean canopy stomatal conductance to vapor pressure deficit in a flooded Taxodium distichum L. forest: hydraulic and non-hydraulic effects.Nitrogenase activity and N2 fixation are stimulated by elevated CO2 in a tropical N2-fixing tree.Jack-and-master trait responses to elevated CO2 and N: a comparison of native and introduced Phragmites australis.Asynchrony among local communities stabilises ecosystem function of metacommunities.Temperate forest methane sink diminished by tree emissions.Methane emissions from the trunks of living trees on upland soils.Elevated CO2 promotes long-term nitrogen accumulation only in combination with nitrogen addition.Plants mediate soil organic matter decomposition in response to sea level rise.Nutrient subsidies to belowground microbes impact aboveground food web interactions.Impacts of Phragmites australis Invasion on Soil Enzyme Activities and Microbial Abundance of Tidal Marshes.Accuracy and Precision of Tidal Wetland Soil Carbon Mapping in the Conterminous United States.Author Correction: Accuracy and Precision of Tidal Wetland Soil Carbon Mapping in the Conterminous United StatesNatural climate solutions for the United StatesDecadal biomass increment in early secondary succession woody ecosystems is increased by CO enrichmentAn empirical model of soil chemical properties that regulate methane production in Japanese rice paddy soilsGeochemical control of microbial Fe(III) reduction potential in wetlands: comparison of the rhizosphere to non-rhizosphere soilMethane production and emissions in trees and forestsRadon as a natural tracer of gas transport through treesAuthor Correction: The future of Blue Carbon scienceThe future of Blue Carbon scienceRepresenting the function and sensitivity of coastal interfaces in Earth system models
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description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Patrick Megonigal
@ast
Patrick Megonigal
@en
Patrick Megonigal
@es
Patrick Megonigal
@nl
type
label
Patrick Megonigal
@ast
Patrick Megonigal
@en
Patrick Megonigal
@es
Patrick Megonigal
@nl
prefLabel
Patrick Megonigal
@ast
Patrick Megonigal
@en
Patrick Megonigal
@es
Patrick Megonigal
@nl
P106
P1153
6603804475
P31
P496
0000-0002-2018-7883