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Effect of cetane improver addition into diesel fuel: Methanol mixtures on performance and emissions at different injection pressures
Author(s) -
Feyyaz Candan,
Murat Ciniviz,
İlker Örs
Publication year - 2016
Publication title -
thermal science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.339
H-Index - 43
eISSN - 2334-7163
pISSN - 0354-9836
DOI - 10.2298/tsci160430265c
Subject(s) - cetane number , nox , diesel fuel , common rail , brake specific fuel consumption , methanol , environmental science , diesel engine , materials science , naturally aspirated engine , exhaust gas recirculation , waste management , diesel exhaust , diesel exhaust fluid , pulp and paper industry , exhaust gas , biodiesel , automotive engineering , chemistry , combustion , organic chemistry , engineering , catalysis
In this study, methanol in ratios of 5-10-15% were incorporated into diesel fuel with the aim of reducing harmful exhaust gasses of Diesel engine, di-tertbutyl peroxide as cetane improver in a ratio of 1% was added into mixture fuels in order to reduce negative effects of methanol on engine performance parameters, and isobutanol of a ratio of 1% was used as additive for preventing phase separation of all mixtures. As results of experiments conducted on a single cylinder and direct injection Diesel engine, methanol caused the increase of NOx emission while reducing CO, HC, CO2, and smoke opacity emissions. It also reduced torque and power values, and increased brake specific fuel consumption values. Cetane improver increased torque and power values slightly compared to methanol-mixed fuels, and reduced brake specific fuel consumption values. It also affected exhaust emission values positively, excluding smoke opacity. Increase of injector injection pressure affected performances of methanol-mixed fuels positively. It also increased injection pressure and NOx emissions, while reducing other exhaust emissions

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