DOE OSTI · 3010903
Reducing Methane Emissions with an Engine Fuel Reformer
Abstract
Southwest Research Institute (SwRI) designed and demonstrated a compact, plasma-based fuel reformer designed to reduce methane leaks from natural-gas engines used in pipeline compression and industrial power applications. The system uses pulsed electrical discharges to convert a small portion of methane (CH4) into hydrogen (H2) and light hydrocarbons, promoting more complete combustion and reducing unburned methane in the exhaust. The reformer was evaluated through bench-scale testing, high-flow facility testing, and engine-integration testing on representative low-speed and high-speed natural-gas engines. Measured methane-leak reductions ranged from 1 to 27 percent, depending on engine type and operating condition, while reformer energy consumption remained below one percent of total engine output. Design refinements addressed thermal and electrical challenges, resulting in reliable operation with minimal impact on engine control systems. The project achieved all performance objectives within budget and schedule, produced a patentable pulsed-power system design, and established a scalable, energy-efficient pathway for mitigating methane leaks from existing natural-gas engine infrastructure.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mangum, Josh [Southwest Research Institute, San Antonio, TX (United States)]. 2025-12-19. Reducing Methane Emissions with an Engine Fuel Reformer. https://doi.org/10.2172/3010903
Cite the original work for its findings. Save a collection to share your selection of sources.