TY - JOUR
T1 - Experimental study on particulate emission of a diesel engine fueled with blended ethanol-dodecanol-diesel
AU - Di, Yage
AU - Cheung, C. S.
AU - Huang, Zuohua
PY - 2009/2
Y1 - 2009/2
N2 - Experiments were conducted on a 4-cylinder direct-injection diesel engine which has a compressing ratio of 19, using ultra low sulfur diesel blended with ethanol using 1-1.5% by volume of 1-dodecanol as the solvent to investigate the particulate emissions of the engine under five engine loads and at engine speeds of 1800 and 2400 rev/min. Blended fuels containing 6.1%, 12.2%, 18.2% and 24.2% by volume of ethanol, corresponding to 2%, 4%, 6% and 8% by mass of oxygen in the blended fuel, were used. At both engine speeds, with an increase in ethanol in the fuel, the smoke opacity, the particulate mass concentration and the total number of nano-size particles are all reduced. A diesel oxidation catalyst (Finnkat) was used and found to further reduce particulate emission. The smoke opacity, the particulate mass concentration and the total number concentration at 2400 rev/min are higher than those at 1800 rev/min.
AB - Experiments were conducted on a 4-cylinder direct-injection diesel engine which has a compressing ratio of 19, using ultra low sulfur diesel blended with ethanol using 1-1.5% by volume of 1-dodecanol as the solvent to investigate the particulate emissions of the engine under five engine loads and at engine speeds of 1800 and 2400 rev/min. Blended fuels containing 6.1%, 12.2%, 18.2% and 24.2% by volume of ethanol, corresponding to 2%, 4%, 6% and 8% by mass of oxygen in the blended fuel, were used. At both engine speeds, with an increase in ethanol in the fuel, the smoke opacity, the particulate mass concentration and the total number of nano-size particles are all reduced. A diesel oxidation catalyst (Finnkat) was used and found to further reduce particulate emission. The smoke opacity, the particulate mass concentration and the total number concentration at 2400 rev/min are higher than those at 1800 rev/min.
KW - Diesel oxidation catalyst
KW - Diesel-ethanol blends
KW - Ethanol
KW - Particle size distribution
KW - Particulate matter
KW - Ultra low sulfur diesel
UR - https://www.scopus.com/pages/publications/58349108052
U2 - 10.1016/j.jaerosci.2008.09.004
DO - 10.1016/j.jaerosci.2008.09.004
M3 - 文章
AN - SCOPUS:58349108052
SN - 0021-8502
VL - 40
SP - 101
EP - 112
JO - Journal of Aerosol Science
JF - Journal of Aerosol Science
IS - 2
ER -