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Facile Coaxial Electrospinning Synthesis of Polyacrylonitrile/Cellulose Acetate Nanofiber Membrane for Oil-Water Separations
被引:11
|作者:
AL-Rajabi, Maha Mohammad
[1
,2
,3
]
Almanassra, Ismail W.
[1
]
Khalil, Abdelrahman K. A.
[1
]
Atieh, Muataz Ali
[1
,4
]
Laoui, Tahar
[1
,5
]
Khalil, Khalil Abdelrazek
[1
,5
]
机构:
[1] Univ Sharjah, Res Inst Sci & Engn, Sharjah 27272, U Arab Emirates
[2] Univ Malaysia Perlis, Fac Chem Engn & Technol, Arau 02600, Perlis, Malaysia
[3] Univ Malaysia Perlis, Ctr Excellence Biomass Utilizat, Arau 02600, Perlis, Malaysia
[4] Univ Sharjah, Coll Engn, Chem & Water Desalinat Engn Program, Sharjah 27272, U Arab Emirates
[5] Univ Sharjah, Coll Engn, Dept Mech & Nucl Engn, Sharjah 27272, U Arab Emirates
来源:
关键词:
nanofibers;
membrane;
electrospinning;
oil-water separation;
hydrophilic-oleophobic;
CELLULOSE-ACETATE;
FIBERS;
NANOPARTICLES;
ADSORPTION;
D O I:
10.3390/polym15234594
中图分类号:
O63 [高分子化学(高聚物)];
学科分类号:
070305 ;
080501 ;
081704 ;
摘要:
Oil-contaminated water and industrial oily wastewater discharges have adversely affected aquatic ecosystems and human safety. Membrane separation technology offers a promising solution for effective oil-water separation. Thus, a membrane with high surface area, hydrophilic-oleophobic properties, and stability is a promising candidate. Electrospinning, a straightforward and efficient process, produces highly porous polymer-based membranes with a vast surface area and stability. The main objective of this study is to produce hydrophilic-oleophobic polyacrylonitrile (PAN) and cellulose acetate (CA) nanofibers using core-shell electrospinning. Incorporating CA into the shell of the nanofibers enhances the wettability. The core PAN polymer improves the electrospinning process and contributes to the hydrophilicity-oleophobicity of the produced nanofibers. The PAN/CA nanofibers were characterized by Fourier transform infrared spectroscopy, field emission scanning electron microscopy, X-ray diffraction, and surface-wetting behavior. The resulting PAN/cellulose nanofibers exhibited significantly improved surface-wetting properties, demonstrating super-hydrophilicity and underwater superoleophobicity, making them a promising choice for oil-water separation. Various oils, including gasoline, diesel, toluene, xylene, and benzene, were employed in the preparation of oil-water mixture solutions. The utilization of PAN/CA nanofibers as a substrate proved to be highly efficient, confirming exceptional separation efficiency, remarkable stability, and prolonged durability. The current work introduces an innovative single-step fabrication method of composite nanofibers, specially designed for efficient oil-water separation. This technology exhibits significant promise for deployment in challenging situations, offering excellent reusability and a remarkable separation efficiency of nearly 99.9%.
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页数:16
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