磺化氧化石墨烯/聚砜复合膜的制备及抗污染性能

Preparation and antifouling property of sulfonated graphene oxide/ polysulfone composite membrane

  • 摘要: 采用浸没沉淀-相转化法制备了磺化氧化石墨烯/聚砜(SGO/PSf)复合膜,对SGO/PSf复合膜的亲水性、纯水通量、孔隙率、表面Zeta电位、膜断面和表面形貌进行测定。为了分析SGO/PSf复合膜的抗污染性能,采用自制牛血清白蛋白(BSA)探针,借助原子力显微镜(AFM)测定了SGO/PSf复合膜与BSA之间的黏附力。结果表明,由于SGO与聚乙烯吡咯烷酮(PVP)的协同作用,SGO含量为0.5wt%的SGO/PSf复合膜的表面自由能最大(114.47 mJ/m2),亲水性最好,对BSA的截留率为97.5%,污染恢复率达到80.06%。BSA与SGO含量为0.5wt%的SGO/PSf复合膜之间的黏附力最小(-0.61 mN/m),说明SGO含量为0.5wt%的SGO/PSf复合膜的抗污染能力最强。

     

    Abstract: The sulfonated graphene oxide/polysulfone (SGO/PSf) composite membranes were prepared by immersion precipitation-phase inversion method. The hydrophilicity, water flux, porosity, surface Zeta potential, membrane cross section and surface morphology of SGO/PSf composite membranes were measured in detail. In order to analysis the antifouling of membranes, the adhesion forces between SGO/PSf composite membranes and bovine serum albumin (BSA) were measured by atomic force microscopy (AFM) with self-made BSA probes. The experimental results show that the SGO/PSf composite membrane with 0.50wt% SGO has the largest surface free energy (114.47 mJ/m2) and the best hydrophilicity, due to the synergistic effect of SGO and polyvinylpyrrolidone (PVP). The rejection rate of SGO/PSf composite membrane to BSA is 97.5%, and the fouling recovery rate is 80.06%. The adhesion force between BSA and membrane is the least (-0.61 mN/m), which illustrates that the antifouling ability of the SGO/PSf composite membrane with 0.50wt% SGO is the best.

     

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