Durability testing of biomass based oxygenated fuel components in a compression ignition engine
- ,
- Arunachalam Lakshminarayanan,
- Daniel B. Olsen,
- Matthew A. Ratcliff,
- Robert L. McCormick,
- Anthony J. Marchese
- ,
- Colorado State University,
- National Renewable Energy Laboratory
Abstract
Blending cellulosic biofuels with traditional petroleumderived fuels results in transportation fuels with reduced carbon footprints. Many cellulosic fuels rely on processing methods that produce mixtures of oxygenates which must be upgraded before blending with traditional fuels. Complete oxygenate removal is energy-intensive and it is likely that such biofuel blends will necessarily contain some oxygen content to be economically viable. Previous work by our group indicated that diesel fuel blends with low levels (<4%-vol) of oxygenates resulted in minimal negative effects on short-term engine performance and emissions. However, little is known about the long-term effects of these compounds on engine durability issues such as the impact on fuel injection, in-cylinder carbon buildup, and engine oil degradation. In this study, four of the oxygenated components previously tested were blended at 4%-vol in diesel fuel and tested with a durability protocol devised for this work consisting of 200 hrs of testing in a stationary, single-cylinder, Yanmar diesel engine operating at constant load. Oil samples, injector spray patterns, and carbon buildup from the injector and cylinder surfaces were analyzed. It was found that, at the levels tested, these fuels had minimal impact on the overall engine operation, which is consistent with our previous findings.
Sustainable Development Goals
- SDG 7 Affordable and Clean Energy
- SDG 13 Climate Action
Bibliographic Information
Output type
Original language
EnglishPublication milestones
- Published - 2017
Publication status
Publisher
American Society of Mechanical Engineers (ASME)Publication series
- Publication series name: ASME 2017 Internal Combustion Engine Division Fall Technical Conference, ICEF 2017
Volume: 1
ISBN (Electronic)
9780791858318Publication IDs
- Scopus: 85040036911
