1 |
Integral process for obtaining acetins from crude glycerol and their effect on the octane index Herrada-Vidales JA, Garc?a-Gonz?lez JM, Mart?nez-Palou R, Guzm?n-Pantoja J Chemical Engineering Communications, 207(2), 231, 2020 |
2 |
The influence of chemical composition on ignition delay times of gasoline fractions Naser N, Jameel AGA, Emwas AH, Singh E, Chung SH, Sarathy SM Combustion and Flame, 209, 418, 2019 |
3 |
Multi-objective optimization of thermally coupled reactor of CCR naphtha reforming in presence of SO2 oxidation to boost the gasoline octane number and hydrogen Saeedi R, Iranshahi D Fuel, 206, 580, 2017 |
4 |
Catalytic partial oxidation of n-octane and isooctane: Experimental and modeling results Carrera A, Pelucchi M, Stagni A, Beretta A, Groppi G International Journal of Hydrogen Energy, 42(39), 24675, 2017 |
5 |
Investigation of the LTC fuel performance index for oxygenated reference fuel blends Niemeyer KE, Daly SR, Cannella WJ, Hagen CL Fuel, 155, 14, 2015 |
6 |
Enhanced performance of nano-crystalline ZSM-5 in acetone to gasoline (ATG) reaction Viswanadham N, Saxena SK Fuel, 105, 490, 2013 |
7 |
Using the Doehlert matrix as a tool for studying the influence of gasoline components on octane numbers Assis JCR, Teixeira JSR, Pontes LAM, Guimaraes PRB, Vianna RF, Bezerra MA, Teixeira LSG Fuel, 113, 744, 2013 |
8 |
Ring contraction and selective ring opening of naphthenic molecules for octane number improvement Santikunaporn M, Alvarez WE, Resasco DE Applied Catalysis A: General, 325(1), 175, 2007 |
9 |
The influence of ZSM-5 zeolite composition and crystal size on the in situ conversion of Fischer-Tropsch products over hybrid catalysts Martinez A, Lopez C Applied Catalysis A: General, 294(2), 251, 2005 |