1 |
Coupling non-isothermal trickle-bed reactor with catalyst pellet models to understand the reaction and diffusion in gas oil hydrodesulfurization Zhao XQ, Yang CF, Lu MK, Shi Y, Qian G, Zhou XG, Duan XZ Chinese Journal of Chemical Engineering, 28(4), 1095, 2020 |
2 |
The effect of oxidation and resulfidation on (Ni/Co)MoS2 hydrodesulfurisation catalysts Bremmer GM, van Haandel L, Hensen EJM, Frenken JWM, Kooyman PJ Applied Catalysis B: Environmental, 243, 145, 2019 |
3 |
Preparation of hydrodesulfurization catalysts using MoS3 nanoparticles as a precursor Gao Y, Han W, Long XY, Nie H, Li DD Applied Catalysis B: Environmental, 224, 330, 2018 |
4 |
Highly efficient NiMo/SiO2-Al2O3 hydrodesulfurization catalyst prepared from gemini surfactant-dispersed Mo precursor Xu JD, Huang TT, Fan Y Applied Catalysis B: Environmental, 203, 839, 2017 |
5 |
Synthesis of hierarchically porous L-KIT-6 silica-alumina material and the super catalytic performances for hydrodesulfurization of benzothiophene Duan A, Li T, Zhao Z, Liu B, Zhou X, Jiang G, Liu J, Wei Y, Pan H Applied Catalysis B: Environmental, 165, 763, 2015 |
6 |
Test of a hydrodesulfurization catalyst in a biomass tar removal process with catalytic steam reforming Zuber C, Hochenauer C, Kienberger T Applied Catalysis B: Environmental, 156, 62, 2014 |
7 |
A computationally simple technique for analyzing catalyst inhibition dynamics involving multiple competing inhibitors White BS, Ho TC Chemical Engineering Science, 120, 143, 2014 |
8 |
Deposition of WO3 on Al2O3 via a microwave hydrothermal method to prepare highly dispersed W/Al2O3 hydrodesulfurization catalyst Wang H, Wu Y, Liu ZW, He L, Yao ZY, Zhao WY Fuel, 136, 185, 2014 |
9 |
Effect of solid-state synthesized alumina properties on the structure and catalytic performance of NiMo catalyst in hydrodesulfurization Zhang M, Yang T, Zhao RY, Liu CG Applied Catalysis A: General, 468, 327, 2013 |
10 |
Development of microwave induced hydrodesulfurization of petroleum streams: A review Shang H, Du W, Liu Z, Zhang H Journal of Industrial and Engineering Chemistry, 19(4), 1061, 2013 |