Attenuation of methane and volatile organic compounds in landfill soil covers.
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Summary
Mass balance calculations using the maximal oxidation rates obtained demonstrated that landfill soil covers have a significant potential for not only methane oxidation but also cometabolic degradation of selected volatile organics, thereby reducing emissions to the atmosphere.
- Type
- article
- Published
- 2004-01-01
- Cited by
- 165
- References
- 56
- OpenAlex
- https://openalex.org/W2016256032
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22776969
Keywords
Methane, Chemistry, Environmental chemistry, Anaerobic oxidation of methane, Tetrachloroethylene
References
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- Biodegradation of trichloroethylene by Methylosinus trichosporium OB3b
- Landfilling of Waste: Biogas
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- Landfilling of waste
- Effects of toxicity, aeration, and reductant supply on trichloroethylene transformation by a mixed methanotrophic culture
- Changing concentration, lifetime and climate forcing of atmospheric methane
- Kinetics of aerobic cometabolism of chlorinated solvents
- Effects of Temperature on Methane Consumption in a Forest Soil and in Pure Cultures of the Methanotroph Methylomonas rubra
- Kinetics of chlorinated hydrocarbon degradation by suspended cultures of methane-oxidizing bacteria
- Capacity for methane oxidation in landfill cover soils measured in laboratory-scale soil microcosms
- Product toxicity and cometabolic competitive inhibition modeling of chloroform and trichloroethylene transformation by methanotrophic resting cells
- Handbook of Environmental Fate and Exposure Data for Organic Chemicals
- Characterization of Landfill Gas Composition at the Fresh Kills Municipal Solid-Waste Landfill
- Microbial oxidation of CH4 at high partial pressures in an organic landfill cover soil under different moisture regimes
- Trace organic compounds in landfill gas at seven U.K. waste disposal sites
- Trace gas compound emissions from municipal landfill sanitary sites
- Fluorinated Organics in the Biosphere
- The adsorption of copper by soil samples from scotland at low equilibrium solution concentrations
- Biological degradation of VCCs and CFCs under simulated anaerobic landfill conditions in laboratory test digesters
Cited by
- Methane oxidation in landfill waste biocover soil: kinetics and sensitivity to ambient conditions.
- Effects of preconditioning the rhizosphere of different plant species on biotic methane oxidation kinetics.
- Adsorption and transport of methane in landfill cover soil amended with waste-wood biochars.
- Biodegradation of CO2, CH4 and volatile organic compounds (VOCs) in soil gas from the Vicano–Cimino hydrothermal system (central Italy)
- Remediation of Aromatic Hydrocarbons in Low Permeability Soils: Updating the Remediation Decision Tree (Synthesis Study)
- Biotic and abiotic controls on biogenic volatile organic compound fluxes from a subalpine forest floor
- Microbial Mitigation of Greenhouse Gas Emissions from Landfill Cover Soils.
- Activity and structure of methanotrophic communities in landfill cover soils.
- Spatial variability of soil gas concentration and methane oxidation capacity in landfill covers.
- Analysis of methanotrophic communities in landfill biofilters using diagnostic microarray.
- Release of trace organic compounds during the decomposition of municipal solid waste components.
- Landfill methane oxidation in soil and bio-based cover systems: a review
- Methane bioattenuation and implications for explosion risk reduction along the groundwater to soil surface pathway above a plume of dissolved ethanol.
- Effect of substrate interaction on oxidation of methane and benzene in enriched microbial consortia from landfill cover soil
- Evaluation of the age of landfill gas methane in landfill gas-natural gas mixtures using co-occurring constituents.
- Biotic systems to mitigate landfill methane emissions
- Estimation of volatile compounds emission rates from the working face of a large anaerobic landfill in China using a wind tunnel system
- Atmospheric emissions and attenuation of non-methane organic compounds in cover soils at a French landfill.
- Microbial community and function of enrichment cultures with methane and toluene
- Measurements of HFC-134a and HCFC-22 in groundwater and unsaturated-zone air: Implications for HFCs and HCFCs as dating tracers
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