Polyethersulfone
1 - 7 of 7 results
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A method of obtaining membranes with a developed inner wall structure has been worked-out by establishing appropriate spinning conditions. Obtaining a developed surface of membranes without interference into the spinneret structure is feasible. Membranes with a developed inner surface bear higher ul
Desalination 240 (2009)
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The adsorption kinetics of surfactants onto the crystal surface spin-coated with a thin layer of a model membrane material, polyethersulfone was monitored through measurements of frequency and dissipation shifts simultaneously using a quartz crystal microbalance with dissipation (QCM-D) apparatus. I
Desalination 250 (2009)
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This paper reports the performance of asymmetric polyethersulfone ultrafiltration flat sheet membranes with polyethylene glycol (PEG) of different molecular weight as additives. The membranes were prepared by phase inversion process from casting solution containing polyethersulfone (PES) as polymer,
Desalination 207 (2007)
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The phase inversion technique was used in this study to prepare polyethersulfone membranes. After optimizing the synthesis factors, like the relative air humidity, the concentration of the polymer and the used solvent, nanoporous membranes were obtained. Characterization of these membranes indicated
Desalination 200 (2006)
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Surface modifying macromolecules (SMMs) were synthesized and blended into the casting solution of polyethersulfone (PES) membranes. The solution was cast to films on the glass plate. The cast films were placed in a temperature-controlled oven with forced air circulation to remove the solvent, before
Desalination 149 (2002)
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In order to reduce the high methanol permeability of membranes in a direct methanol fuel cell application new and better materials are still required. In this paper membranes made from polybenzimidazole/sulfonated polysulfone are given and compared with homopolymer membranes made from sulfonated pol
Desalination 147 (2002)
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This work investigated the preparation of composite membranes by simultaneous casting of polyurethane and polyethersulfone solutions, to form the top and the support layers, respectively. These membranes are intended to be used for propylene/propane separation. Polyvinylpyrrolidone was used as an ad
Desalination 145 (2002)
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