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Design and Use of a Full Flow Sampling System (FFS) for the Quantification of Methane Emissions
Published on: June 12, 2016
Capturing fugitive methane emissions from natural gas compressor buildings
1Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alta., Canada T6G 2G6. bob.hayes@ualberta.ca
Journal of Environmental Management
|August 8, 2006
Summary
Capturing fugitive methane emissions from oil and gas compressor stations is feasible. Computer modeling shows controlled ridge vent extraction can concentrate methane for catalytic destruction, reducing greenhouse gas impact.
Area of Science:
- Environmental Science
- Chemical Engineering
- Energy Sector Studies
Background:
- Fugitive methane emissions constitute 50% of greenhouse gas (GHG) emissions in Canada's conventional oil and gas sector.
- Compressor stations are significant sources of these emissions due to leaks, incomplete combustion, and instrument venting.
- Low methane concentrations (below 5-16% flammability limits) prevent conventional combustion destruction.
Purpose of the Study:
- To investigate the feasibility of capturing fugitive methane emissions from a compressor station.
- To model airflow patterns and methane dispersion within a compressor station building.
- To determine optimal conditions for methane capture for subsequent destruction.
Main Methods:
- Utilized computer modeling to simulate airflow and methane dispersion patterns.
- Analyzed the influence of building features (doors, vents) and leak locations on emission flow.
- Simulated controlled extraction rates through the ridge vent.
Main Results:
- Methane primarily exits through the ridge vent when doors are closed.
- Controlled ridge vent extraction effectively concentrates methane emissions.
- Achieved methane concentrations in the range of 0.1-1% by volume, suitable for catalytic destruction.
Conclusions:
- Fugitive methane capture from compressor stations is technically feasible.
- Optimized ventilation strategies, specifically ridge vent extraction, are key to concentrating emissions.
- This approach enables effective destruction of low-concentration methane, mitigating GHG emissions from the oil and gas industry.
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