Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that the catalyst recovers fully the original conversion and selectivity under steady state conditions. In the transition state, the reactivated catalyst achieved the steady state conditions faster. This was supported by the physicochemical characterisation that revealed pore widening due to crystallite sintering during the reactivation, which has a beneficial effect. The excellent stability after the reactivation recycle, as well as along the run, shows the great promise of this catalyst.</p
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over γ-alumina under in situ conditions has revealed that the...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The dehydrogenation of ethylbenzene to styrene is a highly important industrial reaction and the foc...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over γ-alumina under in situ conditions has revealed that the...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
Ethylbenzene oxidative dehydrogenation over gamma-alumina under in situ conditions has revealed that...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The thermal activation of a silica-stabilized gamma-alumina impacts positively on the oxidative dehy...
The dehydrogenation of ethylbenzene to styrene is a highly important industrial reaction and the foc...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...
An in situ thermal reactivation of a multi-walled carbon-nanostructure (MWCNT) is feasible with impr...