The behavior of a palladium-based membrane module for hydrogen separation has been studied experimentally and mathematically modeled. These metallic membranes may have rather high hydrogen permeation rates and extremely high selectivity, and both aspects can lead to an accumulation of the non permeable gases and a depletion of hydrogen in the boundary layer close to the membrane [1-3]. In this work several tests have been performed using Pd based membranes formed by a 2.5µm Pd-Ag layer (about 20% wt Ag) deposited onto a porous ceramic support. The concentration polarization phenomenon was studied by measuring hydrogen permeance at different feed compositions (using both binary and ternary mixtures containing hydrogen, nitrogen and methane),...
Hydrogen separation with palladium-based membranes is considered as a promising technology for pre-c...
Thin palladium membranes of different thicknesses were prepared on sol-gel derived mesoporous c-alum...
A planar microstructured hydrogen separation module has been fabricated to study the hydrogen permea...
The behavior of a palladium-based membrane module for hydrogen separation has been studied experimen...
none3Pure and mixed gas permeation tests were performed on Pd-based hydrogen selective membranes at ...
The aim of this investigation was analyzing the influence of the concentration polarization on the p...
The permeability of hydrogen selective Pd-based membraneswas tested in different experimental condit...
In this work, we show the application of a systematic general experimental analysis to estimate in a...
Highly efficient Pd membranes supported on porous ceramic tubes were synthesized by a modified elect...
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...
\u3cp\u3eMembrane reactor processes are being increasingly proposed as an attractive solution for pu...
Palladium-based membrane-assisted fluidized bed reactors have been proposed for the production of ul...
none3Hydrogen permeation experiments were performed to evaluate the influence of water vapor on hydr...
Hydrogen separation with palladium-based membranes is considered as a promising technology for pre-c...
Thin palladium membranes of different thicknesses were prepared on sol-gel derived mesoporous c-alum...
A planar microstructured hydrogen separation module has been fabricated to study the hydrogen permea...
The behavior of a palladium-based membrane module for hydrogen separation has been studied experimen...
none3Pure and mixed gas permeation tests were performed on Pd-based hydrogen selective membranes at ...
The aim of this investigation was analyzing the influence of the concentration polarization on the p...
The permeability of hydrogen selective Pd-based membraneswas tested in different experimental condit...
In this work, we show the application of a systematic general experimental analysis to estimate in a...
Highly efficient Pd membranes supported on porous ceramic tubes were synthesized by a modified elect...
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...
\u3cp\u3eMembrane reactor processes are being increasingly proposed as an attractive solution for pu...
Palladium-based membrane-assisted fluidized bed reactors have been proposed for the production of ul...
none3Hydrogen permeation experiments were performed to evaluate the influence of water vapor on hydr...
Hydrogen separation with palladium-based membranes is considered as a promising technology for pre-c...
Thin palladium membranes of different thicknesses were prepared on sol-gel derived mesoporous c-alum...
A planar microstructured hydrogen separation module has been fabricated to study the hydrogen permea...