首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Graphene oxide/Fe(III)-based metal-organic framework membrane for enhanced water purification based on synergistic separation and photo-Fenton processes
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Graphene oxide/Fe(III)-based metal-organic framework membrane for enhanced water purification based on synergistic separation and photo-Fenton processes

机译:基于协同分离和光芬工艺的石墨烯氧化物/ Fe(III)基于金属有机骨架膜,用于增强净水净化

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摘要

Herein, a graphene oxide/MIL-88A(Fe) (GO/M88A) membrane was prepared for the first time by a facile vacuum filtration method. The intercalation of photo-Fenton catalytic M88A into GO nanosheets can not only regulate 2D nanochannels, but also endow the membrane with photo-Fenton catalytic activity. Accordingly, the GO/M88A membrane showed an enhanced separation efficiency and flux (more than 6 times that of GO membrane) based on synergistic separation/photo-Fenton processes. Importantly, the GO/M88A membrane maintained high separation efficiency (97.87 %) and almost constant flux even after 12 cycles of MB separation. The GO/M88A membrane can also be used to treat real textile wastewaters. Moreover, the membrane was directly used as catalyst for photo-Fenton catalytic degradation of contaminants with high degradation efficiency for MB (98.81 %) and BPA (97.27 %). Therefore, the results indicate that this novel GO/M88A membrane has excellent separation performance, stability and photo-Fenton activity and can be used as a potential membrane for water purification and environmental protection applications.
机译:在此,通过容易真空过滤方法首次制备石墨烯/ MIL-88A(Fe)(Fe / M88A)膜。光芬顿催化M88a的插入到纳米蛋白酶中不仅可以调节2d纳米通道,而且还赋予膜与光芬催化活性。因此,GO / M88A膜基于协同分离/光芬工艺显示出增强的分离效率和通量(GO膜的超过6倍)。重要的是,即使在12个Mb分离循环后,Go / M88A膜也保持高分离效率(97.87%)和几乎恒定的助焊剂。 GO / M88A膜也可用于治疗真正的纺织废水。此外,膜直接用作光芬顿催化剂的催化剂,用于MB(98.81%)和BPA的高降解效率(97.27%)。因此,结果表明,这种新型GO / M88A膜具有优异的分离性能,稳定性和光芬活动,可用作潜在的膜用于净水和环保应用。

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