1 |
Reinforcement of steam oxidative cracking of 1-methyl naphthalene by the synergistic combination of hydrogenation and oxidation over nickel-containing mixed oxide catalysts Do LT, Shin EW Journal of Catalysis, 371, 245, 2019 |
2 |
Development of a regenerative reformer for tar-free syngas production in a steam gasification process Tsuboi Y, Ito S, Takafuji M, Ohara H, Fujimori T Applied Energy, 185, 1217, 2017 |
3 |
ZrO2-impregnated red mud as a novel catalyst for steam catalytic cracking of vacuum residue Lee HS, Nguyen-Huy C, Pham TT, Shin EW Fuel, 165, 462, 2016 |
4 |
Study of the Rheological Properties of Heat-Treatment Products of Asphaltic Oils in the Presence of Rock-Forming Minerals Petrov SM, Abdelsalam YII, Vakhin AV, Baibekova LR, Kayukova GP, Karalin EA Chemistry and Technology of Fuels and Oils, 51(1), 133, 2015 |
5 |
Steam catalytic cracking of naphtha over ZSM-5 zeolite for production of propene and ethene: Micro and macroscopic implications of the presence of steam Corma A, Mengual J, Miguel PJ Applied Catalysis A: General, 417, 220, 2012 |
6 |
Production of steam cracking feedstocks by mild cracking of plastic wastes Angyal A, Miskolczi N, Bartha L, Tungler A, Nagy L, Vida L, Nagy G Fuel Processing Technology, 91(11), 1717, 2010 |
7 |
Continuous hydrogen production by sequential catalytic cracking of acetic acid - Part I. Investigation of reaction conditions and application to two parallel reactors operated cyclically Davidian T, Guilhaume N, Daniel C, Mirodatos C Applied Catalysis A: General, 335(1), 64, 2008 |
8 |
Oxycracking of hydrocarbons: Chemistry, technology and economic potential Lange JP, Schoonebeek RJ, Mercera PDL, van Breukelen FW Applied Catalysis A: General, 283(1-2), 243, 2005 |
9 |
Catalytic conversion of palm oil to fuels and chemicals Leng TY, Mohamed AR, Bhatla S Canadian Journal of Chemical Engineering, 77(1), 156, 1999 |
10 |
Modeling the influence of mineral rocks, active in different hot gas conditioning systems and technologies, on the production of light alpha-olefins Taralas G Canadian Journal of Chemical Engineering, 77(6), 1205, 1999 |