膜
材料科学
石墨烯
化学工程
氧化物
复合数
乳状液
水处理
饮用水净化
纳米技术
化学
复合材料
环境工程
有机化学
生物化学
工程类
冶金
作者
Yixin Peng,Zongxue Yu,Fĕi Li,Qi Chen,Di Yin,Min Xia
标识
DOI:10.1016/j.seppur.2018.01.059
摘要
Separation membranes fabricated with graphene oxide, a kind of two-dimensional nanomaterial, have been extensively explored to achieve the separation purpose in water treatment. However, due to the natural hydrophily and compact stacked layer structure of the GO-based membrane, which usually has a low water flux and easily damaged. In this study, [email protected]2 nanohybrid has been fabricated successfully, and cooperated with dopamine to synthesize novel PVDF/[email protected]2/PDA nanohybrid membranes via a surface deposition method. Owing to the nanochannels created by the intercalation of SiO2 between graphene layers, the composite membranes were endowed with high flux and rejection rates in separation of oil-water emulsion and dye wastewater, and the surface morphology and structure of the membrane also improved. Besides, the deposition of dopamine (DA) on the membrane surface not only could firm the composite membrane, but an effective method to obtain an extremely hydrophilic surface, meanwhile this excellent hydrophilic surface was also beneficial for membrane to obtain an outstanding oleophobicity in water environment. More importantly, the novel membranes were successfully applied for the removal of oils and cationic dye from wastewater, which also exhibited a superior anti-fouling property and sustainable stability simultaneously. In summary, the PVDF/[email protected]2/PDA composite membranes could have a promising potential to be used as advanced separation membranes for water purification.
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