Estimation of methane emission flux at landfill surface using laser methane detector: Influence of gauge pressure.

Jin-Kyu Park, Jong-Yun Kang, Nam-Hoon Lee
Author Information
  1. Jin-Kyu Park: Ecowillplus Co. Ltd, Republic of Korea.
  2. Jong-Yun Kang: Ecowillplus Co. Ltd, Republic of Korea.
  3. Nam-Hoon Lee: Department of Environmental and Energy Engineering, Anyang University, Republic of Korea nhlee@anyang.ac.kr.

Abstract

The aim of this study was to investigate the possibility of measuring methane emission fluxes, using surface methane concentration and gauge pressure, by analyzing the influence of gauge pressure on the methane emission flux and the surface methane concentration, as well as the correlation between the methane emission flux and surface methane concentrations. The surface methane concentration was measured using a laser methane detector. Our results show a positive linear relationship between the surface methane concentration and the methane emission flux. Furthermore, the methane emission flux showed a positive linear relationship with the gauge pressure; this implies that when the surface methane concentration and the surface gauge pressure are measured simultaneously, the methane emission flux can be calculated using Darcy's law. A decrease in the vertical permeability was observed when the gauge pressure was increased, because reducing the vertical permeability may lead to a reduced landfill gas emission to the atmosphere, and landfill gas would be accumulated inside the landfill. Finally, this method is simple and can allow for a greater number of measurements during a relatively shorter period. Thus, it provides a better representation of the significant space and time variations in methane emission fluxes.

Keywords

MeSH Term

Lasers
Methane
Models, Theoretical
Pressure
Republic of Korea
Waste Disposal Facilities

Chemicals

Methane

Word Cloud

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