Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics and hydrogen. The main drawback of this reaction is the rapid deactivation of the Mo/HZSM-5 catalyst due to coking. Regeneration at high reaction temperature by air calcination is not possible due to extensive dealumination of the zeolite. We investigated the structural and textural stability of HZSM-5 as a function of the Mo loading in air at high temperature (550–700 °C) and demonstrated that lowering the Mo loading below 2 wt% greatly improves the oxidative stability of Mo/HZSM-5. At low Mo loading (1–2 wt% Mo), Mo is predominantly in the zeolite micropores as cationic mono- and dinuclear Mo-oxo complexes irrespective of the calcination tem...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by usin...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
Dehydroaromatization of methane is a promising reaction to directly convert methane into aromatics a...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by usin...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...
The active site requirements for methane dehydroaromatization by Mo/HZSM-5 were investigated by empl...
The effect of Mo/HZSM-5 pretreatment at 973 K in inert (He), oxidizing (artificial air), and carburi...