Adsorption behavior and mechanism of As(V) on magnetic Fe3O4–graphene oxide (GO) nanohybrid composite material

In this study, the magnetic Fe 3 O 4 –graphene oxide (GO) nanohybrid composite material was prepared via the combination of the modified Hummer’s method and coprecipitation. The morphology of the hybrid sample showed that the diffusion of Fe 3 O 4 nanoparticles into the porous channels of mesoporous...

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Bibliographic Details
Published inAnalytical sciences Vol. 38; no. 2; pp. 427 - 436
Main Authors Dung, Mai Duc, Nga, Tran Thi Viet, Lan, Nguyen Thi, Thanh, Nguyen Kim
Format Journal Article
LanguageEnglish
Published Singapore Springer Singapore 01.02.2022
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Summary:In this study, the magnetic Fe 3 O 4 –graphene oxide (GO) nanohybrid composite material was prepared via the combination of the modified Hummer’s method and coprecipitation. The morphology of the hybrid sample showed that the diffusion of Fe 3 O 4 nanoparticles into the porous channels of mesoporous GO layers not only restricted the restacking of GO nanosheets but also prevented the leaching and agglomeration of magnetic nanoparticles. The result of the kinetic and isotherm studies that were performed to evaluate the adsorption mechanism showed a good fit with the pseudo-second-order kinetic and Langmuir isotherm models. The As(V) adsorption efficiency, H, of the GO/Fe 3 O 4 nanohybrid composite material reached the maximum value of 99.37% after 60 min. The maximum adsorption capacity q m of the GO/Fe 3 O 4 nanohybrid material was 14.1 mg·g −1 in an acidic aqueous solution (pH 1). The role and contribution of GO and Fe 3 O 4 nanoparticles in adsorption and the improvement in As(V) adsorption efficiency were also investigated in further detail. The findings of this work suggested that the GO/Fe 3 O 4 nanohybrid material could be widely applied for polluted water treatment. Graphical abstract
ISSN:0910-6340
1348-2246
DOI:10.1007/s44211-022-00064-z