1 |
Influence of Localization of Acid Sites on Deactivation of Zeolite MFI in Oligomerization Process of Light Alkenes Popov AG, Efimov AV, Ivanova II Petroleum Chemistry, 59(7), 691, 2019 |
2 |
Light alkene production by cracking Picochlorum oculatum microalgae using aluminosilicate catalysts Goyal G, Kuhn JN, Philippidis GP Biomass & Bioenergy, 108, 252, 2018 |
3 |
Evaluation of safety parameters of light alkenes by means of detailed kinetic models Pio G, Salzano E Process Safety and Environmental Protection, 119, 131, 2018 |
4 |
Sodium promoter on iron-based catalyst for direct catalytic synthesis of light alkenes from syngas Li JB, Ma HF, Zhang HT, Sun QW, Ying WY, Fang DY Fuel Processing Technology, 125, 119, 2014 |
5 |
Effects of potassium on MgO-supported Fe-Mn catalysts for the hydrogenation of carbon monoxide to light alkenes Zhang H, Chu W, Zhou J, Hong JP, Jing FL Reaction Kinetics and Catalysis Letters, 94(1), 139, 2008 |
6 |
Highly efficient catalytic conversion of chloromethane to light olefins over HSAPO-34 as studied by catalytic testing and in situ FTIR Wei YX, Zhang DZ, Liu ZM, Su BL Journal of Catalysis, 238(1), 46, 2006 |
7 |
CO hydrogenation to light alkenes over Mn/Fe catalysts prepared by coprecipitation and sol-gel methods Wang C, Wang QX, Sun XD, Xu LY Catalysis Letters, 105(1-2), 93, 2005 |
8 |
Light alkenes preparation by the gas phase oxidative cracking or catalytic oxidative cracking of high hydrocarbons Liu XB, Li WZ, Zhu H, Ge QJ, Chen YX, Xu HY Catalysis Letters, 94(1-2), 31, 2004 |
9 |
A comparative study of non-oxidative pyrolysis and oxidative cracking of cyclohexane to light alkenes Liu XB, Li WZ, Xu HY, Chen YX Fuel Processing Technology, 86(2), 151, 2004 |
10 |
Production of light alkenes with low CO2 emission from gas phase oxidative cracking (GOC) of hexane Liu XB, Li WZ, Xu HY, Chen YX Reaction Kinetics and Catalysis Letters, 81(2), 203, 2004 |