Advanced graphene oxide-based membranes as a potential alternative for dyes removal: A review

Graphene oxide (GO) is one of the most well-known graphene derivatives which, due to its outstanding chemical, electrical and optical properties as well as its high oxygen content, has been recently applied in several fields such as in the construction of sensors, as antimicrobial agent for biomedic...

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Veröffentlicht in:The Science of the total environment 2021-10, Vol.789, p.147957-147957, Article 147957
Hauptverfasser: Januário, Eduarda Freitas Diogo, Vidovix, Taynara Basso, Beluci, Natália de Camargo Lima, Paixão, Rebecca Manesco, Silva, Luiz Henrique Biscaia Ribeiro da, Homem, Natália Cândido, Bergamasco, Rosangela, Vieira, Angélica Marquetotti Salcedo
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Sprache:eng
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Zusammenfassung:Graphene oxide (GO) is one of the most well-known graphene derivatives which, due to its outstanding chemical, electrical and optical properties as well as its high oxygen content, has been recently applied in several fields such as in the construction of sensors, as antimicrobial agent for biomedical applications, as well as nanofiller material for membranes applied in wastewater treatment. In this last-mentioned field, the synthesis and functionalization of membranes with GO has proven to improve the performance of membranes applied in the treatment of wastewater containing dyes, regarding antifouling behavior, selectivity and flux. In this review, an overview of water pollution caused by effluents containing synthetic dyes, the advantages and limitations of GO-based membranes and the latest research advances on the use of GO-based membranes for dyes removal, including its impact on membrane performance, are discussed in detail. The future panorama of the applicability of GO-based membranes for the treatment of water contaminated by dyes is also provided. [Display omitted] •GO-based membranes showed great efficiency in the removal of dyes from effluents.•The incorporation of GO enhanced the overall characteristics of membranes.•GO-based membranes showed higher water/permeate fluxes than conventional membranes.•Better performance regarding fouling was observed with GO's addition onto membranes.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2021.147957