1 |
The legacy and promise of heterogeneous selective oxidation and ammoxidation catalysis Brazdil JF Catalysis Today, 363, 55, 2021 |
2 |
A study of M1/M2 phase synergy in the MoVTe(Nb,Ta)O catalysts for propane ammoxidation to acrylonitrile Woo J, Sanghavi U, Vonderheide A, Guliants VV Applied Catalysis A: General, 515, 179, 2016 |
3 |
Characterization of bismuth-cerium-molybdate selective propylene ammoxidation catalysts Brazdil JF, Toft MA, Lin SSY, McKenna ST, Zajac G, Kaduk JA, Golab JT Applied Catalysis A: General, 495, 115, 2015 |
4 |
Ammoxidation of propylene to acrylonitrile in a bench-scale circulating fluidized bed reactor Hu YQ, Zhao FY, Wei F, Jin Y Chemical Engineering and Processing, 46(10), 918, 2007 |
5 |
Monte Carlo simulation of kinetics of ammonia oxidative decomposition over the commercial propylene ammoxidation catalyst(Mo-Bi) Luo ZG, Zhan XL, Chen FQ, Yang YG Chinese Journal of Chemical Engineering, 11(1), 110, 2003 |
6 |
Effect of alumina in multicomponent bismuth phosphate catalyst supported on silica-alumina for propylene ammoxidation reaction Chang TS, Lee DK, Cho DH, Yun SS Reaction Kinetics and Catalysis Letters, 78(1), 35, 2003 |
7 |
Catalytic behavior of BiPO4 in the multicomponent bismuth phosphate system on the propylene ammoxidation Chang TS, Li GJ, Shin CH, Lee YK, Yun SS Catalysis Letters, 68(3-4), 229, 2000 |
8 |
Time on stream behaviour in the (amm)oxidation of propene/propane over iron antimony oxide: cyclic operation Magagula Z, van Steen E Catalysis Today, 49(1-3), 155, 1999 |
9 |
Syntheses and Properties of Cydopentadienyl-Substituted Imidotitanium Fluorides Liu FQ, Herzog A, Roesky HW, Uson I Inorganic Chemistry, 35(3), 741, 1996 |
10 |
Syntheses, Structures, and Reactivity of a Series of (Pentamethylcyclopentadienyl)Molybdenum(V) and (Pentamethylcyclopentadienyl)Tungsten(V) Imido Complexes Kohler K, Roesky HW, Herzog A, Gornitzka H, Steiner A, Uson I Inorganic Chemistry, 35(7), 1773, 1996 |