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Free-Standing Graphene Oxide-Palygorskite Nanohybrid Membrane for Oil/Water Separation

机译:用于油水分离的自立式氧化石墨烯-坡缕石纳米杂化膜

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摘要

Graphene oxide (GO) is an emerging kind of building block for advanced membranes with tunable passageway for water molecules. To synergistically manipulate the channel and surface structures/properties of GO-based membranes, the different building blocks are combined and the specific interfacial interactions are designed in this study. With vacuum-assisted filtration self-assembly, palygorskite nanorods are intercalated into adjacent GO nanosheets, and GO nanosheets are assembled into laminate structures through pi-pi stacking and cation cross-linking. The palygorskite nanorods in the free-standing GOP nanohybrid membranes take a 3-fold role, rendering enlarged mass transfer channels, elevating hydration capacity, and creating hierarchical nanostructures of membrane surfaces. Accordingly, the permeate fluxes from 267 L/(m(2) h) for GO membrane to 1867 L/(m(2) h) for GOP membrane. The hydration capacity and hierarchical nanostructures synergistically endow GOP Membranes with underwater superoleophobic and low oil-adhesive water/membrane interfaces. Moreover, by rationally imparting chemical and physical joint defense mechanisms, the GOP membranes exhibit outstanding separation performance and antifouling properties for various oil-in-water emulsion systems (with different concentration, pH, or oil species). The high water permeability, high separation efficiency; as well as superior anti-oil-fouling properties of GOP membranes enlighten the great prospects of graphene-based nanostructured materials in water purification and wastewater treatment.
机译:氧化石墨烯(GO)是一种新兴的高级膜组件,具有可调节的水分子通道。为了协同操纵基于GO的膜的通道和表面结构/特性,在本研究中将不同的构建基组合起来并设计了特定的界面相互作用。通过真空辅助过滤自组装,坡缕石纳米棒被插入相邻的GO纳米片中,GO纳米片通过pi-pi堆叠和阳离子交联组装成层压结构。独立的GOP纳米杂化膜中的坡缕石纳米棒起着三重作用,扩大了传质通道,提高了水合作用能力,并创建了膜表面的分层纳米结构。因此,从GO膜的267 L /(m(2)h)到GOP膜的1867 L /(m(2)h)的渗透通量。水合能力和分层纳米结构协同赋予GOP膜以水下超疏油性和低油粘性的水/膜界面。此外,通过合理地赋予化学和物理联合防御机制,GOP膜对各种水包油型乳液系统(具有不同的浓度,pH值或油类)表现出出色的分离性能和防污性能。透水性高,分离效率高; GOP膜的优异防污性能,启发了石墨烯基纳米结构材料在水净化和废水处理中的广阔前景。

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