Microbial aerobic methane oxidation (MAMO) affects methane emissions through landfill covers by not only consuming methane, but also causing biomass accumulation associated with bacterial growth. Although the reduction of soil porosity by biomass accumulation has been well recognized, most existing models ignore this effect when estimating MAMO efficiency. The present study proposes a newly improved theoretical model that could consider the effects of both microbial growth and biomass accumulation on MAMO during coupled water–gas–heat reactive transport in unsaturated soil. Comprehensive batch incubation tests were performed to determine the input parameters required. Part of a set of published experimental data was used to validate the new...
Methane is a powerful greenhouse gas that is produced in large quantities in marine sediments. Micro...
By observing the behavior of soil microorganisms with respect to proximity to a methane production s...
In order to devise design criteria for biocovers intended to enhance the microbial oxidation of land...
Microbial aerobic methane oxidation (MAMO) affects methane emissions through landfill covers by not ...
Microbial aerobic methane oxidation (MAMO) has been considered as an environmental-friendly method f...
The microbial oxidation of methane in landfill cover soils offers great potential to reduce methane ...
Reduction of soil moisture by plant root-water uptake could improve soil aeration for microbial aero...
Methane, one of the primary greenhouse gases, negatively affects climate change. Its atmospheric con...
Microbial aerobic methane oxidation in unsaturated landfill cover involves coupled water, gas and he...
Thesis (Master's)--University of Washington, 2016-12Global methane models predict that wetlands cont...
A model was developed to predict substrate concentrations for bacterial growth in a groundwater syst...
Reported methane oxidation activity (MOA) varies widely for common landfill cover materials. Variati...
Microbial fuel cells (MFCs) are bioelectrochemical systems able to generate electricity from wetland...
The microbial oxidation of methane in engineered cover soils is considered a potent option for the m...
Methane oxidation rates observed in a topsoil covering a retired landfill are the highest reported (...
Methane is a powerful greenhouse gas that is produced in large quantities in marine sediments. Micro...
By observing the behavior of soil microorganisms with respect to proximity to a methane production s...
In order to devise design criteria for biocovers intended to enhance the microbial oxidation of land...
Microbial aerobic methane oxidation (MAMO) affects methane emissions through landfill covers by not ...
Microbial aerobic methane oxidation (MAMO) has been considered as an environmental-friendly method f...
The microbial oxidation of methane in landfill cover soils offers great potential to reduce methane ...
Reduction of soil moisture by plant root-water uptake could improve soil aeration for microbial aero...
Methane, one of the primary greenhouse gases, negatively affects climate change. Its atmospheric con...
Microbial aerobic methane oxidation in unsaturated landfill cover involves coupled water, gas and he...
Thesis (Master's)--University of Washington, 2016-12Global methane models predict that wetlands cont...
A model was developed to predict substrate concentrations for bacterial growth in a groundwater syst...
Reported methane oxidation activity (MOA) varies widely for common landfill cover materials. Variati...
Microbial fuel cells (MFCs) are bioelectrochemical systems able to generate electricity from wetland...
The microbial oxidation of methane in engineered cover soils is considered a potent option for the m...
Methane oxidation rates observed in a topsoil covering a retired landfill are the highest reported (...
Methane is a powerful greenhouse gas that is produced in large quantities in marine sediments. Micro...
By observing the behavior of soil microorganisms with respect to proximity to a methane production s...
In order to devise design criteria for biocovers intended to enhance the microbial oxidation of land...