Rodríguez Bárbara E, Armendariz-Ontiveros María Magdalena, Quezada Rodrigo, Huitrón-Segovia Esther A, Estay Humberto, García García Alejandra, García Andreina
Advanced Mining Technology Center (AMTC), Universidad de Chile, Av. Tupper 2007, 8370451 Santiago, Chile.
Departamento de Ciencias del Agua y Medio Ambiente, Instituto Tecnológico de Sonora, 5 de Febrero 818 Sur, Cd. Obregón, 85000 Sonora, CP, Mexico.
Polymers (Basel). 2020 Nov 30;12(12):2860. doi: 10.3390/polym12122860.
The influence of the lateral size and the content of graphene oxide (GO) flakes in specific oxygenate functional groups on the anti-biofouling properties and performance of thin-film composite membrane (TFC) was studied. Three different multidimensional GO samples were prepared with small (500-1200 nm), medium (1200-2300 nm), and large (2300-3600 nm) size distribution, and with different degrees of oxidation (GO3 > GO2 > GO1), varying the concentration of the hydrogen peroxide amount during GO synthesis. GO1 sheets' length have a heterogeneous size distribution containing all size groups, whilst GO2 is contained in a medium-size group, and GO3 is totally contained within a small-size group. Moreover, GO oxygenate groups were controlled. GO2 and GO3 have hydroxyl and epoxy groups at the basal plane of their sheets. Meanwhile, GO1 presented only hydroxyl groups. GO sheets were incorporated into the polyamide (PA) layer of the TFC membrane during the interfacial polymerization reaction. The incorporation of GO1 produced a modified membrane with excellent bactericidal properties and anti-adhesion capacity, as well as superior desalination performance with high water flow (133% as compared with the unmodified membrane). For GO2 and GO3, despite the significant anti-biofouling effect, a detrimental impact on desalination performance was observed. The high content of large sheets in GO2 and small sheet stacking in GO3 produced an unfavorable impact on the water flow. Therefore, the synergistic effect due to the presence of large- and small-sized GO sheets and high content of OH-functional groups (GO1) made it possible to balance the performance of the membrane.
研究了氧化石墨烯(GO)薄片的横向尺寸以及特定含氧官能团中的含量对复合薄膜(TFC)膜的抗生物污染性能和性能的影响。制备了三种不同的多维GO样品,其尺寸分布分别为小尺寸(500 - 1200 nm)、中等尺寸(1200 - 2300 nm)和大尺寸(2300 - 3600 nm),并且具有不同的氧化程度(GO3 > GO2 > GO1),在GO合成过程中改变过氧化氢的用量浓度。GO1薄片的长度具有包含所有尺寸组的不均匀尺寸分布,而GO2包含在中等尺寸组中,GO3完全包含在小尺寸组中。此外,对GO的含氧官能团进行了控制。GO2和GO3在其薄片的基面具有羟基和环氧基。同时,GO1仅呈现羟基。在界面聚合反应期间,将GO薄片掺入TFC膜的聚酰胺(PA)层中。掺入GO1产生了具有优异杀菌性能和抗粘附能力的改性膜,以及具有高水通量的卓越脱盐性能(与未改性膜相比提高了133%)。对于GO2和GO3,尽管具有显著的抗生物污染效果,但观察到对脱盐性能有不利影响。GO2中大尺寸薄片的高含量和GO3中小尺寸薄片的堆叠对水通量产生了不利影响。因此,由于存在大尺寸和小尺寸的GO薄片以及高含量的OH官能团(GO1)所产生的协同效应使得平衡膜的性能成为可能。