2024 : 4 : 29
Hamid Emadi

Hamid Emadi

Academic rank: Assistant Professor
ORCID: 7264-۲۷۶۴-۰۰۰۲-0000
Education: PhD.
ScopusId: 36701357400
Faculty: Faculty of Chemistry
Address: University of Mazandaran
Phone: 011-35302344

Research

Title
Development of a superhydrophilic nanofiber membrane for oil/water emulsion separation via modification of polyacrylonitrile/polyaniline composite
Type
JournalPaper
Keywords
electrospinning, nanofibers membrane, oil/water separation, polyacrylonitrile, polyaniline
Year
2021
Journal POLYMERS FOR ADVANCED TECHNOLOGIES
DOI
Researchers Mohamadreza Shakiba ، Seyed Reza Nabavi ، Hamid Emadi ، Mahdi Faraji

Abstract

In this research, polyaniline (PANI) was used to modify polyacrylonitrile (PAN) electrospun nanofibers for separating oil/water (O/W) emulsions due to its hydrophilic amino groups and simple synthesis. The fabrication of PAN/PANI membranes was carried out by two different methods: blending of PANI with PAN in preelectrospinning solution and coating of PANI on the PAN electrospun nanofibers using in situ polymerization of aniline. The effect of PANI composition (10, 20, 30 and 40 wt% with respect to the weight of PAN) and electrospinning temperature (25C, 40C and 55C) was investigated in PAN/PANI membrane fabrication. The prepared membranes were characterized by Fourier transform infrared spectroscopy (FTIR), field emission scanning electron microscopy (FESEM), atomic force microscopy (AFM), water and under water oil contact angle (WCA and UOCA) measurement and mechanical tensile test. Regarding the results, PAN/40%PANI nanofibers prepared at 40C was considered as the superhydrophilic nanofibers (WCA < 5) and the most suitable membrane among the samples for separation of O/W emulsions. Separation studies revealed a flux of 1300 Lmh (pure water) under gravity and an efficient oil rejection of about 98.8% for PAN/40%PANI@40C membrane. Hence, the PAN/40%PANI@40C membrane was subjected to additional tests including separation of different industrial oils, emulsion separation with surfactant agent, separation under harsh acidic/basic conditions and fouling test. The results confirmed an efficient performance of the obtained superhydrophilic membrane for O/W separation, which make it a potential candidate for the purification of water from industrial organic pollutant.