High Methylene Blue Adsorption Efficiency of Cellulose Acetate-Based Electrospun Nanofiber Membranes Modified with Graphene Oxide and Zeolite

In this work, cellulose acetate (CA)-based nanofiber membranes were successfully fabricated via an electrospinning method in which sodium dodecyl sulfate (SDS)-graphene oxide (GO) and zeolite were used as additives. The incorporation of SDS-GO and zeolite into CA clearly affects the properties and p...

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书目详细资料
发表在:International Journal of Environmental Research
主要作者: Fatiatun; Bakar S.A.; Mohamed A.; Kusuma H.H.; Muqoyyanah; Mohamat R.; Kumar V.V.; Ali K.; Nuryadi R.; Azis M.N.A.; Ahmad M.K.; Mamat M.H.; Othman M.H.D.
格式: 文件
语言:English
出版: Springer Science and Business Media Deutschland GmbH 2025
在线阅读:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85209813957&doi=10.1007%2fs41742-024-00683-6&partnerID=40&md5=fcfa27c39cf9956b8888c90695d3cfc2
实物特征
总结:In this work, cellulose acetate (CA)-based nanofiber membranes were successfully fabricated via an electrospinning method in which sodium dodecyl sulfate (SDS)-graphene oxide (GO) and zeolite were used as additives. The incorporation of SDS-GO and zeolite into CA clearly affects the properties and performance of the fabricated nanofiber membranes, including their morphology, structure, surface area, porosity, and adsorption capacity and efficiency. Some optimization methods, such as the effect of adsorbent material, adsorption process time, and adsorbent dosage, were also investigated. Based on the results of the adsorption studies, the CA/SDS-GO/zeolite membrane exhibited a high methylene blue (MB) adsorption efficiency percentage (94.70%) and an adsorption capacity of 236.76 mg/g after 2 h of adsorption utilizing a small amount of adsorbent (0.005 g). Further adsorption isotherm studies for MB dye showed that it was better fitted by the Freundlich model, with a correlation coefficient of 0.8276. Moreover, the adsorption kinetics model for MB dye was better fitted by the pseudo-second-order model, with a correlation coefficient of 0.9999. These results indicate the interaction between the heterogeneous matrix surface on the CA/SDS-GO/zeolite membrane and the adsorbed MB dye molecules. The mechanism of the CA/SDS-GO/zeolite nanofiber membranes for dye adsorption involves electrostatic interactions between the anionic functional groups of GO (C=O and O–H) and cationic MB dyes, significantly enhancing adsorption capacity. Additionally, this capacity is further augmented by the increased surface area and porosity of the membranes, which results from incorporating SDS-GO and zeolite into the composite, allowing for more dye to be adsorbed over longer adsorption times. Highlights. CA/SDS-GO/zeolite nanofiber membrane presented good adsorption performance CA/SDS-GO/zeolite showed high surface area of nanofiber membrane for MB dye adsorption CA/SDS-GO/zeolite exhibited excellent adsorption performance using 0.005 g of membrane MB dye adsorption follows Freundlich model, shows heterogeneous surface Adsorption kinetics: pseudo-second-order, indicates membrane-MB interaction Graphical Abstract: (Figure presented.) © University of Tehran 2024.
ISSN:17356865
DOI:10.1007/s41742-024-00683-6