International audienceThe new type of efficient pervaporative separation hybrid materials based on cellulose acetate propionate (CAP) and doped with 1-methyl-3-(4-vinylbenzyl)-1H-imidazol-3-ium chloride polymerizable ionic liquid (PIL) monomers (12.3–44.4 wt%) were elaborated for dehydration of propan-2-ol. Broad material and physicochemical characterization of membranes was performed including assessment of physicochemical, equilibrium, transport, and separation properties. Incorporation of PIL results in the plasticization of CAP based membranes. Additionally, with increasing loading of PIL from 12.3 to 44.4 wt% values of thickness-normalized Pervaporation Separation Index (PSIN) increase 1.6–2.4 times comparing to unloaded membrane (pure...
© 2016 Wiley Periodicals, Inc. A systematic study was performed on the combination of support proper...
Cellulose, the most abundant polymer in nature, is an attractive membrane material. Hydroxyl groups ...
Development of novel membranes with optimal performance, selectivity, and stability is a key researc...
International audienceThe new type of efficient pervaporative separation hybrid materials based on c...
Pervaporation is a membrane-separation technique which uses polymeric and/or ceramic membranes. In t...
International audienceA new strategy was developed for grafting ionic liquids (ILs) onto cellulose a...
Cellulose membranes were produced from ionic liquid solutions by phase inversion technique and therm...
For the first time pervaporation separation of miscible liquids have been investigated with three an...
The use of ionic liq.-polymer in supported ultrafiltration membrane in vacuum pervaporation has been...
The unusually broad physical and chemical property window of ionic liquids allows for a wide range o...
Making economically competitive technologies for using biofuels as alternatives to move towards a lo...
This paper presents the results of studies on the preparation of cellulosic membranes, from a soluti...
In the present work, the novel dense and supported membranes based on polyvinyl alcohol (PVA) with i...
A novel cellulose membrane used for isopropanol (IPA) dehydration was prepared by using N-methylmorp...
A solution--diffusion model for the permeation of liquid mixtures through polymeric membranes taking...
© 2016 Wiley Periodicals, Inc. A systematic study was performed on the combination of support proper...
Cellulose, the most abundant polymer in nature, is an attractive membrane material. Hydroxyl groups ...
Development of novel membranes with optimal performance, selectivity, and stability is a key researc...
International audienceThe new type of efficient pervaporative separation hybrid materials based on c...
Pervaporation is a membrane-separation technique which uses polymeric and/or ceramic membranes. In t...
International audienceA new strategy was developed for grafting ionic liquids (ILs) onto cellulose a...
Cellulose membranes were produced from ionic liquid solutions by phase inversion technique and therm...
For the first time pervaporation separation of miscible liquids have been investigated with three an...
The use of ionic liq.-polymer in supported ultrafiltration membrane in vacuum pervaporation has been...
The unusually broad physical and chemical property window of ionic liquids allows for a wide range o...
Making economically competitive technologies for using biofuels as alternatives to move towards a lo...
This paper presents the results of studies on the preparation of cellulosic membranes, from a soluti...
In the present work, the novel dense and supported membranes based on polyvinyl alcohol (PVA) with i...
A novel cellulose membrane used for isopropanol (IPA) dehydration was prepared by using N-methylmorp...
A solution--diffusion model for the permeation of liquid mixtures through polymeric membranes taking...
© 2016 Wiley Periodicals, Inc. A systematic study was performed on the combination of support proper...
Cellulose, the most abundant polymer in nature, is an attractive membrane material. Hydroxyl groups ...
Development of novel membranes with optimal performance, selectivity, and stability is a key researc...