1 |
RON and MON chemical kinetic modeling derived correlations with ignition delay time for gasoline and octane boosting additives Corrubia JA, Capece JM, Cernansky NP, Miller DL, Durrett RP, Najt PM Combustion and Flame, 219, 359, 2020 |
2 |
Investigation of the chemical and dilution effects of major EGR constituents on the reactivity of PRF by weak flames in a micro flow reactor with a controlled temperature profile Grajetzki P, Onda T, Nakamura H, Tezuka T, Maruta K Combustion and Flame, 209, 13, 2019 |
3 |
The research octane numbers of ethanol-containing gasoline surrogates da Silva A, Hauber J, Cancino LR, Huber K Fuel, 243, 306, 2019 |
4 |
Discovery of novel octane hyperboosting phenomenon in prenol biofuel/gasoline blends Monroe E, Gladden J, Albrecht KO, Bays JT, McCormick R, Davis RW, George A Fuel, 239, 1143, 2019 |
5 |
Using fieldable spectrometers and chemometric methods to determine RON of gasoline from petrol stations: A comparison of low-field H-1 NMR@ 80 MHz, handheld RAMAN and benchtop NIR Voigt M, Legner R, Haefner S, Friesen A, Wirtz A, Jaeger M Fuel, 236, 829, 2019 |
6 |
The influence of fuel ignition quality and first injection proportion on gasoline compression ignition (GCI) combustion in a small-bore engine Goyal H, Kook S, Ikeda Y Fuel, 235, 1207, 2019 |
7 |
Juice from fescue grain sorghum to produce bioethanol for gasoline additive Hern?ndez PS, Anzures FM, Mendoza EM, Romo MAR, Silva MTR Journal of Chemical Technology and Biotechnology, 94(11), 3512, 2019 |
8 |
Ethanol blends in spark ignition engines: RON, octane-added value, cooling effect, compression ratio, and potential engine efficiency gain Wang CM, Zeraati-Rezaei S, Xiang LM, Xu HM Applied Energy, 191, 603, 2017 |
9 |
Significance of RON and MON to a modern DISI engine Wang CM, Prakash A, Aradi A, Cracknell R, Xu HM Fuel, 209, 172, 2017 |
10 |
Hydrocracking of low-temperature coal tar over NiMo/Beta-KIT-6 catalyst to produce gasoline oil Meng JP, Wang ZY, Ma YH, Lu JY Fuel Processing Technology, 165, 62, 2017 |