Effects of coating technique on the physicochemical properties and structure of MoS2‐TiO2/PVDF‐PES for membrane distillation application

Author:

Fuzil Nurul Syazana1ORCID,Othman Nur Hidayati1ORCID,Alias Nur Hashimah1ORCID,Mat Shayuti Muhammad Shafiq1ORCID,Shahruddin Munawar Zaman1ORCID,Marpani Fauziah1ORCID,Lau Woei Jye2ORCID,Ismail Ahmad Fauzi2ORCID,Othman Mohd Hafiz Dzarfan2ORCID,Kusworo Tutuk Djoko3ORCID,Abidin Sumaiya Zainal4ORCID,Ul‐Hamid Anwar5ORCID,Rahman Norazah Abd1ORCID

Affiliation:

1. Department of Oil and Gas Engineering, School of Chemical Engineering, College of Engineering Universiti Teknologi MARA Shah Alam Malaysia

2. Advanced Membrane Technology Research Centre (AMTEC) Universiti Teknologi Malaysia Skudai Malaysia

3. Department of Chemical Engineering, Faculty of Engineering Diponegoro University Semarang Indonesia

4. Centre for Research in Advanced Fluid & Processes (FLUID CENTRE) Universiti Malaysia Pahang Al‐Sultan Abdullah Kuantan Malaysia

5. Core Research Facilities King Fahd University of Petroleum & Minerals Dhahran Saudi Arabia

Abstract

AbstractBACKGROUNDMembrane distillation (MD) for desalination encounters significant hurdles as a result of pore wetting, leading to reduced permeate flux or deterioration in permeate quality over time. Therefore, membranes used in MD must be highly hydrophobic to prevent liquid from entering the pores and contaminating the permeate stream. In this study, a thin layer of MoS2‐TiO2 composite was coated using poly (DOPA) as an adhesive to enhance attachment. Two coating methods, interlinking and layering, were compared to determine the most effective method for forming a thin hydrophobic coating layer onto PVDF‐PES hollow fiber membrane.RESULTSInterestingly, this study revealed that increasing the number of dipping cycles led to higher flux, defying conventional expectations. This unexpected outcome is likely to have resulted from the thicker coatings creating a more hydrophobic surface, reducing water molecule adhesion and preventing wetting. Consequently, the membrane demonstrated enhanced flux despite its increased thickness. Among the membranes tested, the MoS2‐TiO2/PVDF‐PES membrane coated using the layering method exhibited the best performance, leading to a flux of 2.06 kg m−2 h−1 and 99.99% salt rejection. This superior performance can also be attributed to the membrane's hydrophobic properties, evident in its water contact angle (WCA) of 99°. By contrast, the interlinking method resulted in lower performance, with a permeate flux of 1.70 kg m−2 h−1 and 99.96% salt rejection, which is likely to have resulted from its lower WCA of 86°.CONCLUSIONThe findings from this study suggest that the coating method has the potential to greatly improve membrane distillation performance through wettability modification rather than altering membrane porosity. © 2024 Society of Chemical Industry (SCI).

Funder

Universiti Teknologi MARA

Publisher

Wiley

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