Utilization of biodiesel/Al2O3 nanoparticles for combustion behavior enhancement of a diesel engine operated on dual fuel mode

Various nanofluids (NFs) have been prepared using nanoparticles (NPs) for dual fuel engine application in this present work. In the initial segment of the work, the NF’s are prepared using aluminum oxide nanoparticles (Al 2 O 3 ). Further, nanoparticles were blended with diary scum oil methyl ester...

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Veröffentlicht in:Journal of thermal analysis and calorimetry 2022-05, Vol.147 (10), p.5897-5911
Hauptverfasser: Sateesh, K. A., Yaliwal, V. S., Soudagar, Manzoore Elahi M., Banapurmath, N. R., Fayaz, H., Safaei, Mohammad Reza, Elfasakhany, Ashraf, EL-Seesy, Ahmed I.
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Sprache:eng
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Zusammenfassung:Various nanofluids (NFs) have been prepared using nanoparticles (NPs) for dual fuel engine application in this present work. In the initial segment of the work, the NF’s are prepared using aluminum oxide nanoparticles (Al 2 O 3 ). Further, nanoparticles were blended with diary scum oil methyl ester (DiSOME) in the mass fraction of 10–30 ppm in steps of 10, with the assistance of a mechanically operated conventional homogenizer and an ultrasonicator. In the next segment of the work, Al 2 O 3 NP’s effect on the characteristics of ignition and engine outgas levels of a single cylinder four strokes direct injection diesel engine functioning on dual fuel mode using DiSOME and producer gas (PG) has been investigated. Engine testing showed that experiments with Al 2 O 3 based NF and PG operation resulted in 11.5% amplified brake thermal efficiency, 23.2% reduction in smoke, 18.2–21.4% reduction in hydrocarbon (HC) and carbon monoxide (CO) emissions, while more significant nitric oxide (NO x ) levels by 32.6% were achieved than the same fuel combination excluded NP’s at 80% load.
ISSN:1388-6150
1588-2926
DOI:10.1007/s10973-021-10928-7