Naseeb Noman, Mohammed Abdul Azeem, Laoui Tahar, Khan Zafarullah
Department of Mechanical Engineering, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
Department of Mechanical and Nuclear Engineering, University of Sharjah, Sharjah 27272, UAE.
Materials (Basel). 2019 Jan 10;12(2):212. doi: 10.3390/ma12020212.
In this article, we report the development of a polyacrylonitrile-graphene oxide-silicon dioxide (PAN-GO-SiO₂) hybrid membrane for separation of oil and water from their emulsified mixture. The membrane was successfully fabricated using a one-step electrospinning process. GO and SiO₂ nanofillers were added in PAN in different concentrations to determine the optimized composition for the PAN-GO-SiO₂ hybrid membrane. A scanning electron microscopy (SEM) examination showed that the nanofillers were uniformly embedded in the nanofibrous structure of the electrospun hybrid membrane. The GO was mainly embedded inside the PAN nanofibers, causing knots while SiO₂ nanoparticles were found embedded on the nanofiber surface, resulting in the formation of micro-nano protrusions on the fiber surface. The formation of these hierarchical structures, together with enhanced hydrophilicity due to oxygen containing groups on both SiO₂ and GO, resulted in a high rejection (>99%) of oil from oil-water emulsion. Membrane performance evaluation under gravity separation tests showed that the separation flux and phase rejection was enhanced with the incorporation of nanofillers. The inclusion of nanofillers also enhanced the mechanical properties of the membrane. The best flux and phase separation performance was obtained for an optimized concentration of 7.5 wt % SiO₂ and 1.5 wt % GO in PAN. The flux of separated water was enhanced from 2600 L m h for pristine PAN to 3151 L m h for PAN-GO-SiO₂. The hybrid membrane also showed good mechanical and chemical stability, and antifouling propensity.
在本文中,我们报道了一种用于从乳化混合物中分离油和水的聚丙烯腈-氧化石墨烯-二氧化硅(PAN-GO-SiO₂)复合膜的研制。该膜通过一步电纺丝工艺成功制备。将不同浓度的GO和SiO₂纳米填料添加到PAN中,以确定PAN-GO-SiO₂复合膜的最佳组成。扫描电子显微镜(SEM)检查表明,纳米填料均匀地嵌入到电纺复合膜的纳米纤维结构中。GO主要嵌入到PAN纳米纤维内部,形成结节,而SiO₂纳米颗粒则嵌入在纳米纤维表面,导致纤维表面形成微纳米突起。这些分级结构的形成,以及由于SiO₂和GO上的含氧基团而增强的亲水性,使得油水乳液中的油截留率很高(>99%)。重力分离试验下的膜性能评估表明,加入纳米填料后分离通量和相截留率得到提高。纳米填料的加入还增强了膜的机械性能。在PAN中SiO₂浓度为7.5 wt%、GO浓度为1.5 wt%的优化浓度下,获得了最佳的通量和相分离性能。分离水的通量从原始PAN的2600 L m⁻² h⁻¹提高到PAN-GO-SiO₂的3151 L m⁻² h⁻¹。该复合膜还表现出良好的机械和化学稳定性以及抗污染倾向。