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首页> 外文期刊>Environmental Science & Technology Letters >Fabrication of a Desalination Membrane with Enhanced Microbial Resistance through Vertical Alignment of Graphene Oxide
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Fabrication of a Desalination Membrane with Enhanced Microbial Resistance through Vertical Alignment of Graphene Oxide

机译:通过石墨烯氧化物垂直取向制备脱盐膜的制备具有增强的微生物抗性

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摘要

Biofouling is a major obstacle for the efficient and reliable operation of membrane-based desalination processes. Innovations in membrane materials and fabrication processes are therefore needed to develop antibiofouling strategies. In this study, we utilize the alignability of an emerging two-dimensional nanomaterial, graphene oxide (GO), to fabricate a desalination membrane with enhanced bacterial resistance. GO nano-sheets are dispersed in a polymer solution to form a homogeneous mixture, which undergoes slow solvent evaporation in a magnetic field to create a thin nano composite membrane with vertically aligned GO nanosheets. The structural characteristics of the fabricated membranes confirm the enhanced exposure of nanosheet edges on the surface through the vertical alignment of GO. Notably, the addition and alignment of GO do not compromise membrane water permeability and water-salt selectivity. When contacted with bacterial cells, membranes with vertically aligned GO nano-sheets exhibit enhanced antimicrobial activity compared with that of the aligned GO membrane. We attribute the enhanced antimicrobial activity to the maximization of edge-mediated interactions through vertical alignment of GO nanosheets. Our results suggest the potential of this membrane to delay the onset of biofouling in desalination and the promise of the developed platform for the design of antimicrobial surfaces for a variety of environmental applications.
机译:生物污染是基于膜的脱盐过程的高效可靠操作的主要障碍。因此需要膜材料和制造过程的创新来开发抗耦合策略。在该研究中,我们利用新出现的二维纳米材料,石墨烯氧化物(GO)的可接近性制造脱盐膜,其具有增强的细菌抗性。去纳米片分散在聚合物溶液中以形成均匀的混合物,该混合物在磁场中经历缓慢的溶剂蒸发,以产生具有垂直对准的纳米片的薄纳米复合膜。制造膜的结构特性通过垂直对准确认了纳米片边缘在表面上的增强暴露。值得注意的是,GO的添加和对准不会损害膜水渗透性和水盐选择性。与细菌细胞接触时,与对准的去膜相比,具有垂直对准的去纳米片的膜具有增强的抗微生物活性。我们将增强的抗微生物活性归因于通过GO纳米片的垂直对准来最大化边缘介导的相互作用。我们的结果表明,这种膜的潜力延迟了脱盐中生物污染的发作以及为各种环境应用设计抗微生物表面的开发平台的承诺。

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