Graphene-coated membranes for membrane distillation have been fabricated by using a wet-filtration approach. Graphene nanoplatelets have been deposited onto PVDF membrane sur-faces. Morphology and physicochemical properties have been explored to evaluate the changes in the surface topography and related effects on the membrane performance in water desalination. The membranes have been tested in membrane distillation plants by using mixtures of sodium chloride and humic acid. The multi-scale rough structure of the surface has been envisaged to amplify the wetting and fouling resistance of the graphene-coated membranes so that a better flux and full salt rejection have been achieved in comparison with pristine PVDF. Total salt rejection and an increase of 77% in flux have been observed for coated membrane with optimized graphene content when worked with NaCl 0.6 M (DCMD, ?T ? 24 °C) over a test period of 6 h. The experimental findings suggest these novel graphene-coated membranes as promising materials to develop functional membranes for high-performing water desalination.

Graphene-Coated PVDF Membranes: Effects of Multi-Scale Rough Structure on Membrane Distillation Performance

Gugliuzza A
Ultimo
Conceptualization
2022

Abstract

Graphene-coated membranes for membrane distillation have been fabricated by using a wet-filtration approach. Graphene nanoplatelets have been deposited onto PVDF membrane sur-faces. Morphology and physicochemical properties have been explored to evaluate the changes in the surface topography and related effects on the membrane performance in water desalination. The membranes have been tested in membrane distillation plants by using mixtures of sodium chloride and humic acid. The multi-scale rough structure of the surface has been envisaged to amplify the wetting and fouling resistance of the graphene-coated membranes so that a better flux and full salt rejection have been achieved in comparison with pristine PVDF. Total salt rejection and an increase of 77% in flux have been observed for coated membrane with optimized graphene content when worked with NaCl 0.6 M (DCMD, ?T ? 24 °C) over a test period of 6 h. The experimental findings suggest these novel graphene-coated membranes as promising materials to develop functional membranes for high-performing water desalination.
2022
Istituto per la Tecnologia delle Membrane - ITM
Inglese
12
5
1
16
16
http://www.scopus.com/record/display.url?eid=2-s2.0-85130379324&origin=inward
Esperti anonimi
Graphene
Membranes
Water Desalination
Antifouling properties
Water purification
Internazionale
Elettronico
4
info:eu-repo/semantics/article
262
Gontarekcastro, E; Di Luca, G; Lieder, M; Gugliuzza, A
01 Contributo su Rivista::01.01 Articolo in rivista
open
   Nuove membrane nanostrutturate preparate da materiali 2D per lo sviluppo di processi produttivi di nuova concezione dedicati alla fornitura di acqua fresca e alla purificazione di gas
   2DMEMPUR
   The Italian Ministry of Foreign Affairs and International Cooperation’
   MAECI
   MAE0088962
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/419684
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