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Effects of compost biocovers on gas flow and methane oxidation in a landfill cover
- Source :
- Waste Management. 29:1595-1601
- Publication Year :
- 2009
- Publisher :
- Elsevier BV, 2009.
-
Abstract
- Previous publications described the performance of biocovers constructed with a compost layer placed on select areas of a landfill surface characterized by high emissions from March 2004 to April 2005. The biocovers reduced CH(4) emissions 10-fold by hydration of underlying clay soils, thus reducing the overall amount of CH(4) entering them from below, and by oxidation of a greater portion of that CH(4). This paper examines in detail the field observations made on a control cell and a biocover cell from January 1, 2005 to December 31, 2005. Field observations were coupled to a numerical model to contrast the transport and attenuation of CH(4) emissions from these two cells. The model partitioned the biocover's attenuation of CH(4) emission into blockage of landfill gas flow from the underlying waste and from biological oxidation of CH(4). Model inputs were daily water content and temperature collected at different depths using thermocouples and calibrated TDR probes. Simulations of CH(4) transport through the two soil columns depicted lower CH(4) emissions from the biocover relative to the control. Simulated CH(4) emissions averaged 0.0gm(-2)d(-1) in the biocover and 10.25gm(-2)d(-1) in the control, while measured values averaged 0.04gm(-2)d(-1) in the biocover and 14gm(-2)d(-1) in the control. The simulated influx of CH(4) into the biocover (2.7gm(-2)d(-1)) was lower than the simulated value passing into the control cell (29.4gm(-2)d(-1)), confirming that lower emissions from the biocover were caused by blockage of the gas stream. The simulated average rate of biological oxidation predicted by the model was 19.2gm(-2)d(-1) for the control cell as compared to 2.7gm(-2)d(-1) biocover. Even though its V(max) was significantly greater, the biocover oxidized less CH(4) than the control cell because less CH(4) was supplied to it.
- Subjects :
- Chromatography, Gas
Flow (psychology)
engineering.material
Methane
Soil
chemistry.chemical_compound
Air Pollution
Computer Simulation
Waste Management and Disposal
Water content
Compost
Temperature
Environmental engineering
Water
Soil classification
Models, Theoretical
Refuse Disposal
Landfill gas
chemistry
Environmental chemistry
Anaerobic oxidation of methane
Soil water
engineering
Environmental science
Oxidation-Reduction
Subjects
Details
- ISSN :
- 0956053X
- Volume :
- 29
- Database :
- OpenAIRE
- Journal :
- Waste Management
- Accession number :
- edsair.doi.dedup.....f4392b7bfad41ad6df9cf90f9350bed9
- Full Text :
- https://doi.org/10.1016/j.wasman.2008.11.007