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Ceramic-polymer composite membranes: Synthesis methods and environmental applications

dc.contributor.authorSawunyama, Lawrence
dc.contributor.authorAjiboye, Timothy O
dc.contributor.authorOyewo, Opeyemi
dc.contributor.authorOnwudiwe, Damian C
dc.contributor.researchID32480342
dc.date.accessioned2026-04-02T07:40:26Z
dc.date.issued2024
dc.descriptionJournal Article, Faculty of Natural and Agricultural Sciences (Material Science Innovation and Modelling (MaSIM))-- North-West University, Mahikeng Campus
dc.description.abstractThe increase in demand for membranes with effective performance and unlimited durability for environmental applications has inspired renewed interest in studies focusing on novel or modified methods of improving pristine membranes. Studies have recently focused on the fabrication of ceramic-polymer composite membranes as one of the strategies for modifying ceramic membranes. The resulting composite combines the merits of the two components of the membranes, thereby resulting in improved membrane properties such as structural integrity, selectivity, penetration rate, chemical and thermal stability, and fouling resistance. The different methods of fabricating ceramic-polymer membranes including the dip coating method, interfacial polymerization, graft polymerization, electrostatic self-assembly, and blending are extensively discussed. Factors that affect each fabrication technique were also presented. Furthermore, the environmental applications of ceramic-polymer composite membranes are highlighted, and their use in areas such as wastewater treatment, pervaporation, and desalination are discussed. Finally, challenges and future proposals for improving ceramic-polymer composite membrane performance and potential applications are addressed.
dc.identifier.citationAjiboye, Timothy O. et al. 2024. Ceramic-polymer composite membranes: Synthesis methods and environmental applications. Ceramics International, (2024), 50:5067-5079, [https://doi.org/10.1016/j.ceramint.2023.11.337]
dc.identifier.urihttps://doi.org/10.1016/j.ceramint.2023.11.337
dc.identifier.urihttp://hdl.handle.net/10394/46408
dc.language.isoen
dc.publisherCeramics International
dc.subjectCeramic-polymer Membranes
dc.subjectEnvironmental Remediation
dc.subjectWastewater
dc.subjectPervaporation
dc.subjectDesalination
dc.titleCeramic-polymer composite membranes: Synthesis methods and environmental applications
dc.typeArticle

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