Science and Technology Indonesia
Vol. 11 No. 3 (2026): July

Physicochemical Properties and Water Filtration Performance of Electric Field Fabricated Polyvinylidene Fluoride Membranes

Aneka Firdaus (Department of Mechanical Engineering, Faculty of Engineering, Universitas Sriwijaya, South Sumatera, 30139, Indonesia)
Agung Mataram (Department of Mechanical Engineering, Faculty of Engineering, Universitas Sriwijaya, South Sumatera, 30139, Indonesia)
Rahma Dani (Department of Physics Education, Faculty of Teacher Training and Education, Universitas Sriwijaya, South Sumatera, 30139, Indonesia)
Muhammad Satya Putra Gantada (Department of Mechanical Engineering, Faculty of Engineering, Universitas Sriwijaya, South Sumatera, 30139, Indonesia)
Nukman (Department of Mechanical Engineering, Faculty of Engineering, Universitas Sriwijaya, South Sumatera, 30139, Indonesia)
Irwin Bizzy (Department of Mechanical Engineering, Faculty of Engineering, Universitas Sriwijaya, South Sumatera, 30139, Indonesia)
Ahmad Fauzi Ismail (Advanced Membrane Technology Research Centre (AMTEC), Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Johor, 81310, Malaysia)



Article Info

Publish Date
21 Jun 2026

Abstract

This study investigated the use of an electric field-assisted phase inversion method (15 kV) to tailor the properties of PVDF membranes with a thickness of 3 mm. The electric field significantly altered membrane formation, producing porous structures compared to the dense morphology of untreated membranes. Increasing the PVDF concentration (25–35%) reduced the pore size from 11.54 µm to 5.27 µm, resulting in more uniform structures. Surface analysis indicated that the membranes remained relatively smooth, with smaller surface features at higher polymer concentrations. The mechanical properties improved substantially, with the tensile strength increasing from 12.28 MPa to 43.21 MPa and higher stiffness observed. FTIR results revealed enhanced β-phase formation under the electric field, indicating improved chain alignment, supported by increased crystallinity from XRD. In terms of filtration performance, the permeability reached 55.32 L/m2·h·bar, while turbidity rejection exceeded 90% for all treated membranes. These results demonstrate a promising approach for high-performance PVDF membranes and strong potential as composite base materials.

Copyrights © 2026






Journal Info

Abbrev

JSTI

Publisher

Subject

Biochemistry, Genetics & Molecular Biology Chemical Engineering, Chemistry & Bioengineering Environmental Science Materials Science & Nanotechnology Physics

Description

An international Peer-review journal in the field of science and technology published by The Indonesian Science and Technology Society. Science and Technology Indonesia is a member of Crossref with DOI prefix number: 10.26554/sti. Science and Technology Indonesia publishes quarterly (January, April, ...