This paper describes a procedure to measure the permeability P, diffusivity D, and rate of adsorption k1, thus determining the solubility S and rate of desorption k2 of He, N2, O2, CH4, and CO2 on a polydimethylsiloxane (PDMS) membrane. The described procedure is able to determine experimentally all the physical quantities that characterize the gas transport process through a thin rubber polymer membrane. The experiments were carried out at room temperature and at a transmembrane pressure of 1 atm. The results are in good agreement with the available data in the literature and offer an evaluation of k1 and k2
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The rapid advancement of membrane gas separation processes has spurred the development of new and mo...
This paper describes a procedure to measure the permeability P, diffusivity D, and rate of adsorptio...
AbstractThe paper describes a reliable technique to prepare PDMS membrane used to determine the perm...
AbstractThe paper describes a reliable technique to prepare PDMS membrane used to determine the perm...
The paper describes a reliable technique to prepare PDMS membrane used to determine the permeability...
The paper describes a reliable technique to prepare PDMS membrane used to determine the permeability...
The polymeric membranes technology is a dynamic growing field, exploited in several areas of applica...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
The purpose of this investigation is to fabricate PDMS membranes with reliable surface roughness in ...
We have used equilibrium molecular dynamics (EMD) simulations to investigate the temperature depende...
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The rapid advancement of membrane gas separation processes has spurred the development of new and mo...
This paper describes a procedure to measure the permeability P, diffusivity D, and rate of adsorptio...
AbstractThe paper describes a reliable technique to prepare PDMS membrane used to determine the perm...
AbstractThe paper describes a reliable technique to prepare PDMS membrane used to determine the perm...
The paper describes a reliable technique to prepare PDMS membrane used to determine the permeability...
The paper describes a reliable technique to prepare PDMS membrane used to determine the permeability...
The polymeric membranes technology is a dynamic growing field, exploited in several areas of applica...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
The purpose of this investigation is to fabricate PDMS membranes with reliable surface roughness in ...
We have used equilibrium molecular dynamics (EMD) simulations to investigate the temperature depende...
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The gas permeation on a polymeric membrane for H2/CO2 separation in accordance to the solution-diffu...
The rapid advancement of membrane gas separation processes has spurred the development of new and mo...