Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film model
Thin Film Composite (TFC) Polyelectrolyte Multilayer (PEM) Nanofiltration (NF) membrane consisting of multilayer of Poly(diallyl dimethyl ammonium chloride) (PDAC) and Poly(sodium 4-styrenesulfonate) (PSS) deposited on polyethersulfone (PES) support was prepared using spin-assisted layer by layer...
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Komunitas Ilmuwan dan Profesional Muslim Indonesia
2020-07-01
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doaj-78fab874c67f4abaa74947f13b975ecf2020-11-25T03:13:23ZengKomunitas Ilmuwan dan Profesional Muslim IndonesiaCommunications in Science and Technology2502-92582502-92662020-07-0151101510.21924/cst.5.1.2020.177177Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film modelAhmad Alghamdi0Farid Fadhillah1Al Imam Mohammad Ibn Saud Islamic UniversityAl Imam Mohammad Ibn Saud Islamic UniversityThin Film Composite (TFC) Polyelectrolyte Multilayer (PEM) Nanofiltration (NF) membrane consisting of multilayer of Poly(diallyl dimethyl ammonium chloride) (PDAC) and Poly(sodium 4-styrenesulfonate) (PSS) deposited on polyethersulfone (PES) support was prepared using spin-assisted layer by layer assembly (SA-LbL). This work is an effort to discover new material having better characteristics and performance than commercial polyamide (PA) NF membrane. Two main operating conditions namely temperature and salt concentration were investigated and the effect of both on membrane performance was studied. Solution-diffusion Film Model (SDFM) membrane employing two fitting parameters i.e. membrane salt permeability (PS) and stagnant layer salt permeability PS(d), was used to explain membrane transport across the membrane. The result showed an good agreement between experimental and observed rejection rate suggests PEM membrane behaves similar to typical solution diffusion-type composite membrane and SDFM can be used to predict the membrane performance and behavior.https://cst.kipmi.or.id/journal/article/view/177layer-by-layer assembly; polyelectrolyte; membrane transport; solution diffusion model, nanofiltration |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ahmad Alghamdi Farid Fadhillah |
spellingShingle |
Ahmad Alghamdi Farid Fadhillah Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film model Communications in Science and Technology layer-by-layer assembly; polyelectrolyte; membrane transport; solution diffusion model, nanofiltration |
author_facet |
Ahmad Alghamdi Farid Fadhillah |
author_sort |
Ahmad Alghamdi |
title |
Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film model |
title_short |
Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film model |
title_full |
Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film model |
title_fullStr |
Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film model |
title_full_unstemmed |
Thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: Application of solution diffusion film model |
title_sort |
thin film composite polyelectrolyte multilayer nanofiltration membrane fabricated using spin assisted layer by layer assembly: application of solution diffusion film model |
publisher |
Komunitas Ilmuwan dan Profesional Muslim Indonesia |
series |
Communications in Science and Technology |
issn |
2502-9258 2502-9266 |
publishDate |
2020-07-01 |
description |
Thin Film Composite (TFC) Polyelectrolyte Multilayer (PEM) Nanofiltration (NF) membrane consisting of multilayer of Poly(diallyl dimethyl ammonium chloride) (PDAC) and Poly(sodium 4-styrenesulfonate) (PSS) deposited on polyethersulfone (PES) support was prepared using spin-assisted layer by layer assembly (SA-LbL). This work is an effort to discover new material having better characteristics and performance than commercial polyamide (PA) NF membrane. Two main operating conditions namely temperature and salt concentration were investigated and the effect of both on membrane performance was studied. Solution-diffusion Film Model (SDFM) membrane employing two fitting parameters i.e. membrane salt permeability (PS) and stagnant layer salt permeability PS(d), was used to explain membrane transport across the membrane. The result showed an good agreement between experimental and observed rejection rate suggests PEM membrane behaves similar to typical solution diffusion-type composite membrane and SDFM can be used to predict the membrane performance and behavior. |
topic |
layer-by-layer assembly; polyelectrolyte; membrane transport; solution diffusion model, nanofiltration |
url |
https://cst.kipmi.or.id/journal/article/view/177 |
work_keys_str_mv |
AT ahmadalghamdi thinfilmcompositepolyelectrolytemultilayernanofiltrationmembranefabricatedusingspinassistedlayerbylayerassemblyapplicationofsolutiondiffusionfilmmodel AT faridfadhillah thinfilmcompositepolyelectrolytemultilayernanofiltrationmembranefabricatedusingspinassistedlayerbylayerassemblyapplicationofsolutiondiffusionfilmmodel |
_version_ |
1724647158680911872 |