TY - JOUR
T1 - Investigation on the gaseous and particulate emissions of a compression ignition engine fueled with diesel-dimethyl carbonate blends
AU - Cheung, C. S.
AU - Zhu, Ruijun
AU - Huang, Zuohua
PY - 2011/1/1
Y1 - 2011/1/1
N2 - The effect of dimethyl carbonate (DMC) on the gaseous and particulate emissions of a diesel engine was investigated using Euro V diesel fuel blended with different proportions of DMC. Combustion analysis shows that, with the blended fuel, the ignition delay and the heat release rate in the premixed combustion phase increase, while the total combustion duration and the fuel consumed in the diffusion combustion phase decrease. Compared with diesel fuel, with an increase of DMC in the blended fuel, the brake thermal efficiency is slightly improved but the brake specific fuel consumption increases. On the emission side, CO increases significantly at low engine load but decreases at high engine load while HC decreases slightly. NOx reduces slightly but the reduction is not statistically significant, while NO2 increases slightly. Particulate mass and number concentrations decrease upon using the blended fuel while the geometric mean diameter of the particles shifts towards smaller size. Overall speaking, diesel-DMC blends lead to significant improvement in particulate emissions while the impact on CO, HC and NOx emissions is small.
AB - The effect of dimethyl carbonate (DMC) on the gaseous and particulate emissions of a diesel engine was investigated using Euro V diesel fuel blended with different proportions of DMC. Combustion analysis shows that, with the blended fuel, the ignition delay and the heat release rate in the premixed combustion phase increase, while the total combustion duration and the fuel consumed in the diffusion combustion phase decrease. Compared with diesel fuel, with an increase of DMC in the blended fuel, the brake thermal efficiency is slightly improved but the brake specific fuel consumption increases. On the emission side, CO increases significantly at low engine load but decreases at high engine load while HC decreases slightly. NOx reduces slightly but the reduction is not statistically significant, while NO2 increases slightly. Particulate mass and number concentrations decrease upon using the blended fuel while the geometric mean diameter of the particles shifts towards smaller size. Overall speaking, diesel-DMC blends lead to significant improvement in particulate emissions while the impact on CO, HC and NOx emissions is small.
KW - Diesel engine
KW - Dimethyl carbonate (DMC)
KW - Euro V diesel fuel
KW - Gaseous and particulate emissions
UR - https://www.scopus.com/pages/publications/78649855680
U2 - 10.1016/j.scitotenv.2010.10.027
DO - 10.1016/j.scitotenv.2010.10.027
M3 - 文章
C2 - 21081245
AN - SCOPUS:78649855680
SN - 0048-9697
VL - 409
SP - 523
EP - 529
JO - Science of the Total Environment
JF - Science of the Total Environment
IS - 3
ER -