Department of Civil and Environmental Engineering, Hanyang University, Seoul, South Korea; Department of Materials and Testing, National Textile University, Faisalabad, Pakistan.
Department of Civil and Environmental Engineering, Hanyang University, Seoul, South Korea.
Environ Res. 2018 Nov;167:255-266. doi: 10.1016/j.envres.2018.07.029. Epub 2018 Jul 20.
Membranes with amphiphobic properties are crucial for desalination of concentrated saline water with organic foulant by membrane distillation. In this research, we coated Fluorographite (FGi) particles on polyvinylidene-fluoride (PVDF) flat sheet membranes with 0.8% v/v polydimethylsiloxane (PDMS) as binder by filtration coating method. We evaluated its amphiphobicity via contact angles which were observed by DI water, canola oil and organic solutions as mimicking for oleophobicity. Surface modifications by FGi particles on the surface of membranes was introduced with PDMS binder which brought bifunctionality of amphiphobicity to enhance hydrophobicity and oleophobicity. We also investigated performance of coated membranes in direct contact membrane distillation (DCMD) with 1 molar concentrated NaCl solution along with humic acid being organic foulant and compared with virgin membrane (M1 membrane) and Liquid entry pressure (LEP) was also evaluated. LEP was measured by dynamic method which shown considerable improvement in coated membranes. M3 membrane showed overall better performance in terms of salt rejection higher than 99.87% and flux as compared to M1 membrane. Furthermore, the evaluation of surface characterizations was done by FESEM with EDX, AFM and FTIR. Surface morphology confirmed the coating of FGi on membrane surface while EDX evidenced increase in atomic percent of fluorine in turn F:C ratio.
具有抗两亲性质的膜对于通过膜蒸馏从浓缩盐水中去除有机污染物至关重要。在这项研究中,我们通过过滤涂层法在聚偏二氟乙烯(PVDF)平板膜上涂覆了 0.8% v/v 的聚二甲基硅氧烷(PDMS)作为粘结剂的氟化石墨(FGi)颗粒。我们通过接触角评估了其疏水性,观察到接触角是用 DI 水、菜籽油和有机溶液模拟疏油性的。表面改性通过 PDMS 粘结剂在膜表面引入了 FGi 颗粒,这带来了疏水性和疏油性的双功能,从而增强了疏水性和疏油性。我们还研究了涂覆膜在直接接触膜蒸馏(DCMD)中的性能,其中 1 摩尔浓度的 NaCl 溶液和腐殖酸作为有机污染物,与原始膜(M1 膜)进行了比较,同时还评估了液体入口压力(LEP)。LEP 通过动态方法测量,结果表明涂覆膜有了相当大的改进。与 M1 膜相比,M3 膜在盐截留率(高于 99.87%)和通量方面表现出了整体更好的性能。此外,还通过 FESEM 结合 EDX、AFM 和 FTIR 对表面特性进行了评估。表面形态学证实了 FGi 在膜表面的涂层,而 EDX 证明了氟原子的原子百分比增加,从而增加了 F:C 比。