Selective propane dehydrogenation is one of the commercialised technology for the production of propylene. The main drawback of such process is closely linked to the high temperature required to reach a sustainable propane conversion that affects catalyst stability owing to coke formation on the catalyst surface. Accordingly, a periodic regeneration of catalytic bed is required. The aim of this paper is to investigate the option to perform the reaction in the presence of Pd-based membrane, that selectively removing hydrogen from reaction environment, could lead to a substantial reduction in the operating reaction temperature, decreasing the extent of reactions responsible for coke formation. The effect of operating conditions, in terms of f...
A kinetic model of propane dehydrogenation on a Pt,Sn/Mg(Al)O is presented, accounting for product d...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
In this research, a reactor concept for the oxidative dehydrogenation of propane was studied. First ...
Selective propane dehydrogenation is one of the commercialised technology for the production of prop...
Selective propane dehydrogenation is one of the commercialised technology for the production of prop...
The forecasts in the industrial chemistry field evidenced the growing demand of propylene, and the n...
In a high‐temperature catalytic membrane reactor, a plug‐flow reactor is combined with a gas‐separat...
In this work, the fluidized bed membrane reactor (FBMR) technology for the direct dehydrogenation of...
This work aims at providing insight into the deactivation mechanism of Pd-based membranes in propane...
Several reactor configurations have been tested for catalytic propane dehydrogenation employing Pt-S...
The propylene production processes currently used in the petrochemical industry (fluid catalytic cra...
A heat-integrated packed-bed membrane reactor is studied based on detailed, transient 2D models for ...
A kinetic model of propane dehydrogenation on a Pt,Sn/Mg(Al)O is presented, accounting for product d...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
In this research, a reactor concept for the oxidative dehydrogenation of propane was studied. First ...
Selective propane dehydrogenation is one of the commercialised technology for the production of prop...
Selective propane dehydrogenation is one of the commercialised technology for the production of prop...
The forecasts in the industrial chemistry field evidenced the growing demand of propylene, and the n...
In a high‐temperature catalytic membrane reactor, a plug‐flow reactor is combined with a gas‐separat...
In this work, the fluidized bed membrane reactor (FBMR) technology for the direct dehydrogenation of...
This work aims at providing insight into the deactivation mechanism of Pd-based membranes in propane...
Several reactor configurations have been tested for catalytic propane dehydrogenation employing Pt-S...
The propylene production processes currently used in the petrochemical industry (fluid catalytic cra...
A heat-integrated packed-bed membrane reactor is studied based on detailed, transient 2D models for ...
A kinetic model of propane dehydrogenation on a Pt,Sn/Mg(Al)O is presented, accounting for product d...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
In this research, a reactor concept for the oxidative dehydrogenation of propane was studied. First ...