In this work, the fluidized bed membrane reactor (FBMR) technology for the direct dehydrogenation of propane (PDH) was demonstrated at a laboratory scale. Double-skinned PdAg membranes were used to selectively remove H2 during dehydrogenation tests over PtSnK/Al2O3 catalyst under fluidization. The performance of the fluidized bed membrane reactor was experimentally investigated and compared with the conventional fluidized bed reactor (FBR) by varying the superficial gas velocity over the minimum fluidization velocity under fixed operating conditions (i.e., 500 °C, 2 bar and feed composition of 30vol% C3H8-70vol% N2). The results obtained in this work confirmed the potential for improving the PDH performance using the FBMR system. An increas...
Selective propane dehydrogenation is one of the commercialised technology for the production of prop...
This paper reports the preparation and performance characterization of new PdAg supported membranes ...
A novel membrane reactor with two zones containing structured filamentous catalytic beds was propose...
In this work, the fluidized bed membrane reactor (FBMR) technology for the direct dehydrogenation of...
In this work, the fluidized bed membrane reactor (FBMR) technology for the direct dehydrogenation of...
Several reactor configurations have been tested for catalytic propane dehydrogenation employing Pt-S...
In a high‐temperature catalytic membrane reactor, a plug‐flow reactor is combined with a gas‐separat...
An experimental demonstration of the oxidative dehydrogenation of propane (ODHP) in a lab-scale pack...
The forecasts in the industrial chemistry field evidenced the growing demand of propylene, and the n...
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...
With growing demand for hydrogen in the industrial and energy sectors, research on novel hydrogen pr...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
In this work, a novel Pd–Ag double-skinned (DS-) membrane is used for the first time in conditions t...
Selective propane dehydrogenation is one of the commercialised technology for the production of prop...
This paper reports the preparation and performance characterization of new PdAg supported membranes ...
A novel membrane reactor with two zones containing structured filamentous catalytic beds was propose...
In this work, the fluidized bed membrane reactor (FBMR) technology for the direct dehydrogenation of...
In this work, the fluidized bed membrane reactor (FBMR) technology for the direct dehydrogenation of...
Several reactor configurations have been tested for catalytic propane dehydrogenation employing Pt-S...
In a high‐temperature catalytic membrane reactor, a plug‐flow reactor is combined with a gas‐separat...
An experimental demonstration of the oxidative dehydrogenation of propane (ODHP) in a lab-scale pack...
The forecasts in the industrial chemistry field evidenced the growing demand of propylene, and the n...
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...
With growing demand for hydrogen in the industrial and energy sectors, research on novel hydrogen pr...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
In this work, a novel Pd–Ag double-skinned (DS-) membrane is used for the first time in conditions t...
Selective propane dehydrogenation is one of the commercialised technology for the production of prop...
This paper reports the preparation and performance characterization of new PdAg supported membranes ...
A novel membrane reactor with two zones containing structured filamentous catalytic beds was propose...