Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming of different feedstocks in comparison with other reactor types. However, the long-term performance and stability of the applied membranes are extremely important for the possible industrial exploitation of these reactors. This study investigates the long-term stability of thin-film Pd-Ag membranes supported on porous Al2O3 supports. The stability of five similarly prepared membranes have been investigated for 2650 h, up to 600 °C and in fluidized bed conditions. Results show the importance and the contribution of the sealing of the membranes at temperatures up to 500 °C. At higher temperatures the membranes surface deformation results in pinho...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
Palladium-based membranes for hydrogen separation have been studied by several research groups durin...
This paper reports the preparation, characterization and stability tests of thin-film Pd–Ag supporte...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming o...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming ...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming ...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming o...
\u3cp\u3e Membrane reactors have demonstrat...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
Palladium-based membranes for hydrogen separation have been studied by several research groups durin...
This paper reports the preparation, characterization and stability tests of thin-film Pd–Ag supporte...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming o...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming ...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming ...
Membrane reactors have demonstrated a large potential for the production of hydrogen via reforming o...
\u3cp\u3e Membrane reactors have demonstrat...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
The present work focuses on the study of a metallic supported Pd–Ag membrane for high temperature ap...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
Pd-based membranes prepared by pore-plating technique have been investigated for the first time unde...
Palladium-based membranes for hydrogen separation have been studied by several research groups durin...
This paper reports the preparation, characterization and stability tests of thin-film Pd–Ag supporte...