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  5. Surface Modification of UiO-66 on Hollow Fibre Membrane for Membrane Distillation

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Article
English
2023

Surface Modification of UiO-66 on Hollow Fibre Membrane for Membrane Distillation

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0 Files

English
2023
Membranes
Vol 13 (3)
DOI: 10.3390/membranes13030253

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Mohd Hafiz Dzarfan Othman
Mohd Hafiz Dzarfan Othman

Universiti Teknologi Malaysia

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Noor Fadilah Yusof
Amirul Afiat Raffi
Nur Zhatul Shima Yahaya
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Abstract

The hydrophobicity of metal-organic frameworks (MOFs) is critical in enhancing the separation process in membrane distillation. Herein, a new superhydrophobic University of Oslo 66 (UiO-66) MOFs was successfully constructed on the top of alumina hollow fibre (AHF) membrane for desalination purposes. The fabrication methodology of the membrane involved in situ growth of pure crystalline UiO-66 on top of AHF and post-synthetic modification by fluorosilane grafting. The resultant membrane was characterised to study the physicochemical properties of the pristine and modified membrane. A superhydrophobic UiO-66 with a contact angle of 163.6° and high liquid entry pressure was obtained by introducing a highly branched fluorocarbon chain while maintaining its crystallinity. As a result, the modified membrane achieved 14.95 L/m2∙h water flux and 99.9% NaCl rejection with low energy consumption in the direct contact membrane distillation process. Furthermore, the high surface energy contributed by UiO-66 is maximised to produce the maximum number of accessible sites for the grafting process. The synergistic effect of surface hydrophobicity and porous UiO-66 membrane in trapping water vapour shows great potential for desalination application.

How to cite this publication

Noor Fadilah Yusof, Amirul Afiat Raffi, Nur Zhatul Shima Yahaya, Khairul Hamimah Abas, Mohd Hafiz Dzarfan Othman, Juhana Jaafar, Mukhlis A. Rahman (2023). Surface Modification of UiO-66 on Hollow Fibre Membrane for Membrane Distillation. Membranes, 13(3), pp. 253-253, DOI: 10.3390/membranes13030253.

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Publication Details

Type

Article

Year

2023

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Membranes

DOI

10.3390/membranes13030253

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