نمایش مختصر رکورد

dc.contributor.authorArsat, Nurafidahen_US
dc.contributor.authorJaafar, Juhanaen_US
dc.contributor.authorLau, Woei Jyeen_US
dc.contributor.authorOthman, Mohd Hafiz Dzarfanen_US
dc.contributor.authorA Rahman, Mukhlisen_US
dc.contributor.authorAziz, Farhanaen_US
dc.contributor.authorYusof, Norhanizaen_US
dc.contributor.authorWan Salleh, Wan Norharyatien_US
dc.contributor.authorIsmail, Ahmad Fauzien_US
dc.date.accessioned1399-07-22T18:24:15Zfa_IR
dc.date.accessioned2020-10-13T18:24:18Z
dc.date.available1399-07-22T18:24:15Zfa_IR
dc.date.available2020-10-13T18:24:18Z
dc.date.issued2020-10-01en_US
dc.date.issued1399-07-10fa_IR
dc.date.submitted2019-12-02en_US
dc.date.submitted1398-09-11fa_IR
dc.identifier.citationArsat, Nurafidah, Jaafar, Juhana, Lau, Woei Jye, Othman, Mohd Hafiz Dzarfan, A Rahman, Mukhlis, Aziz, Farhana, Yusof, Norhaniza, Wan Salleh, Wan Norharyati, Ismail, Ahmad Fauzi. (2020). Physical Studies of Forward Osmosis Membranes Prepared by Cross-linking Polyvinyl Alcohol on Electrospun Nanofibers. Journal of Membrane Science and Research, 6(4), 359-366. doi: 10.22079/jmsr.2020.117738.1310en_US
dc.identifier.issn2476-5406
dc.identifier.urihttps://dx.doi.org/10.22079/jmsr.2020.117738.1310
dc.identifier.urihttp://www.msrjournal.com/article_39202.html
dc.identifier.urihttps://iranjournals.nlai.ir/handle/123456789/434870
dc.description.abstractThe conventional nanofiber-supported forward osmosis (FO) membrane possessed some issues, for example, easy deformation and weak interfacial strength between the substrate and selective layer. A dual-layered composite membrane consists of electrospun nanofibrous membranes (ENMs) as the support layer and cross-linked polyvinyl alcohol (PVA) top coating as the active layer is fabricated. Hence, the objective of this work is to study the physical properties of the prepared PVA/ polyvinylidene fluoride (PVDF) composite membranes. The novelty of this work relies on the new exploitation of the prepared dual-layered thin film nanofibrous composite (TFNC) membranes via the cross-linked technique in the FO process. The experiment works include the fabrication of nanofibrous substrates and selective layer via electrospinning, followed by the PVA cross-linking process prior to the characterisation studies and FO evaluation. FO performance test revealed a comparable water flux with the conventional dual-layered composite membrane, besides exhibited a significantly low Js /Jw ratio. This study indicated that dual-layered cross-linked PVA on electrospun PVDF nanofibers is a promising approach to overcome the drawback of the existing issues in the conventional method of preparing surface coated composite membranes which is a viable option to manufacture high-performance TFNC-FO membranes.en_US
dc.format.extent1358
dc.format.mimetypeapplication/pdf
dc.languageEnglish
dc.language.isoen_US
dc.publisherFIMTEC & MPRLen_US
dc.relation.ispartofJournal of Membrane Science and Researchen_US
dc.relation.isversionofhttps://dx.doi.org/10.22079/jmsr.2020.117738.1310
dc.subjectElectrospinningen_US
dc.subjectElectrospun nanofibrous membranesen_US
dc.subjectComposite membranesen_US
dc.subjectForward osmosisen_US
dc.subjectPolyvinyl alcoholen_US
dc.subjectComposite membranesen_US
dc.subjectElectrospun membranesen_US
dc.subjectFormation/structure/performanceen_US
dc.subjectForward osmosis (FO)en_US
dc.titlePhysical Studies of Forward Osmosis Membranes Prepared by Cross-linking Polyvinyl Alcohol on Electrospun Nanofibersen_US
dc.typeTexten_US
dc.typeSI: Honoring AFen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.contributor.departmentAdvanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysiaen_US
dc.citation.volume6
dc.citation.issue4
dc.citation.spage359
dc.citation.epage366
nlai.contributor.orcid0000-0001-8939-8518


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