- By:
- Gao, Zhiming ; Kowalski, Stephen P; Fricke, Brian A; Pihl, Josh A; Toops, Todd J
- Page Number:
- 69-77
- Book Title:
- 11th Thermal and Fluids Engineering Conference (TFEC) Proceedings
- Publication Date:
- April 21, 2026
- Publisher Location:
- BEGELL HOUSE Inc., Danbury, Connecticut, United States of America
- Conference Name:
- 11th Thermal and Fluids Engineering Conference (TFEC)
- Conference Location:
- Tempe, Arizona, United States of America
- Conference Sponsor:
- ASTFE
- View DOI Listing:
- https://doi.org/10.1615/TFEC2026.cbf.061522
Abstract
Residential natural gas furnaces are widely used in the US homes. Manufacturers dedicate significant design and testing resources to meet requirements of design standards. One area of these standards is controlling flue gas carbon monoxide (CO) emissions. To more effectively reduce CO emissions at the flue, we developed a novel catalyst-assisted approach that integrated a low Pt/Rh loading acidic gas reduction (AGR) catalyst with three-way catalyst (TWC) or diesel oxidation catalyst (DOC) components. Compact catalysts were fabricated and assembled into tubular components, which can be seamlessly incorporated into the primary heat exchanger of a representative commercially available condensing furnace. The retrofitted furnace was demonstrated and tested following ANSI/ASHRAE Standard 103-2017. Experimental results showed that both AGR/TWC and AGR/DOC configurations achieved near-zero CO emissions under steady-state and cold-start conditions, compared with up to 500 ppm at a cold start and 17 ppm in a steady state in the OEM furnace. The catalyst-assisted furnaces also exhibited an annual fuel utilization efficiency improvement of more than 1.5% relative to the baseline unit, with a manageable pressure drop of 2.0−2.5 in. of water column. These results demonstrate that the catalyst-assisted approach can effectively eliminate CO emissions and improve energy efficiency. The technology has broad applicability for residential and commercial gas-fired heating systems.