The charge regulation concept is combined with the Navier-Stokes and Nernst-Planck equations to describe the ion retention of nanofiltration membranes consisting of narrow cylindrical pores. The charge regulation approach replaces the assumption of a constant charge or a constant potential at the membrane pore surface, and accounts for the influence of pH, salt concentration, and type of electrolyte on ion retention. In the current model, radial concentration and potential gradients are considered to be negligibly small (valid for narrow enough pores), resulting in a one-dimensional transport description. The model describes typical experimental data for nanofiltration membranes, such as the change of ion retention with pore radius, ion con...
A space-charge model for electrolyte transport in charged capillary pores was examined experimentall...
Nanofiltration and electrodialysis membrane separation processes are used for wastewater treatment a...
A sorption model applicable to calculate the radial equilibrium concentrations of ions in the pores ...
The charge regulation concept is combined with the Navier-Stokes and Nernst-Planck equations to desc...
The charge-regulation concept is combined with the theory of irreversible processes to predict multi...
The pressure-driven electrolyte transport through nanofiltration membrane pores with constant surfac...
The effect of the ion size on salt rejection is investigated using the Donnan steric pore model (DSP...
The pressure–driven electrolyte transport through nanofiltration membrane pores with specified wall ...
The major ion partitioning effect may be due to steric, Donnan and dielectric exclusion which are co...
There is an increasing need for model-based tools to design membrane processes for new industrial ap...
International audienceThe salt rejection of membranes with inhomogeneous fixed charge densities incl...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
La modélisation du transport de matière à travers une structure microporeuse chargée constitue une é...
The “adsorption–amphoteric” model is used to investigate the role of the main phenomena determining ...
We revisit the classical problem of flow of electrolyte solutions through charged capillary nanopore...
A space-charge model for electrolyte transport in charged capillary pores was examined experimentall...
Nanofiltration and electrodialysis membrane separation processes are used for wastewater treatment a...
A sorption model applicable to calculate the radial equilibrium concentrations of ions in the pores ...
The charge regulation concept is combined with the Navier-Stokes and Nernst-Planck equations to desc...
The charge-regulation concept is combined with the theory of irreversible processes to predict multi...
The pressure-driven electrolyte transport through nanofiltration membrane pores with constant surfac...
The effect of the ion size on salt rejection is investigated using the Donnan steric pore model (DSP...
The pressure–driven electrolyte transport through nanofiltration membrane pores with specified wall ...
The major ion partitioning effect may be due to steric, Donnan and dielectric exclusion which are co...
There is an increasing need for model-based tools to design membrane processes for new industrial ap...
International audienceThe salt rejection of membranes with inhomogeneous fixed charge densities incl...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
La modélisation du transport de matière à travers une structure microporeuse chargée constitue une é...
The “adsorption–amphoteric” model is used to investigate the role of the main phenomena determining ...
We revisit the classical problem of flow of electrolyte solutions through charged capillary nanopore...
A space-charge model for electrolyte transport in charged capillary pores was examined experimentall...
Nanofiltration and electrodialysis membrane separation processes are used for wastewater treatment a...
A sorption model applicable to calculate the radial equilibrium concentrations of ions in the pores ...