We report on the effect of butane and butylene on hydrogen permeation through thin state-of-the-art Pd–Ag alloy membranes. A wide range of operating conditions, such as temperature (200–450 °C) and H2/butylene (or butane) ratio (0.5–3), on the flux-reducing tendency were investigated. In addition, the behavior of membrane performance during prolonged exposure to butylene was evaluated. In the presence of butane, the flux-reducing tendency was found to be limited up to the maximum temperature investigated, 450 °C. Compared to butane, the flux-reducing tendency in the presence of butylene was severe. At 400 °C and 20% butylene, the flux decreases by ~85% after 3 h of exposure but depends on temperature and the H2/butylene ratio. In terms of o...
This study reports the poisoning effect of co-existing nitrogen on hydrogen permeation through Pd co...
The direct dehydrogenation of butane (BDH) is emerging as an attractive on-purpose technology for th...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
We report on the effect of butane and butylene on hydrogen permeation through thin state-of-the-art ...
In this work, a novel Pd–Ag double-skinned (DS-) membrane is used for the first time in conditions t...
This work aims at providing insight into the deactivation mechanism of Pd-based membranes in propane...
In this work, a novel Pd–Ag double-skinned (DS-) membrane is used for the first time in conditions t...
The forecasts in the industrial chemistry field evidenced the growing demand of propylene, and the n...
A commercial Cr2O3-Al2O3 catalyst was placed in one of two zones of a plug flow reactor with a palla...
\u3cp\u3ePd-based membranes have the potential to be used for hydrogen purification and production i...
Hydrogen gas is one of the most produced gases in the world for industrial purposes, generally produ...
\u3cp\u3eMembrane reactor processes are being increasingly proposed as an attractive solution for pu...
Membrane reactor processes are being increasingly proposed as an attractive solution for pure hydrog...
Membrane reactor processes are being increasingly proposed as an attractive solution for pure hydrog...
This study reports the poisoning effect of co-existing nitrogen on hydrogen permeation through Pd co...
The direct dehydrogenation of butane (BDH) is emerging as an attractive on-purpose technology for th...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
We report on the effect of butane and butylene on hydrogen permeation through thin state-of-the-art ...
In this work, a novel Pd–Ag double-skinned (DS-) membrane is used for the first time in conditions t...
This work aims at providing insight into the deactivation mechanism of Pd-based membranes in propane...
In this work, a novel Pd–Ag double-skinned (DS-) membrane is used for the first time in conditions t...
The forecasts in the industrial chemistry field evidenced the growing demand of propylene, and the n...
A commercial Cr2O3-Al2O3 catalyst was placed in one of two zones of a plug flow reactor with a palla...
\u3cp\u3ePd-based membranes have the potential to be used for hydrogen purification and production i...
Hydrogen gas is one of the most produced gases in the world for industrial purposes, generally produ...
\u3cp\u3eMembrane reactor processes are being increasingly proposed as an attractive solution for pu...
Membrane reactor processes are being increasingly proposed as an attractive solution for pure hydrog...
Membrane reactor processes are being increasingly proposed as an attractive solution for pure hydrog...
This study reports the poisoning effect of co-existing nitrogen on hydrogen permeation through Pd co...
The direct dehydrogenation of butane (BDH) is emerging as an attractive on-purpose technology for th...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...