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印刷辅助的图案化超滤膜表面修饰。

Printing-Assisted Surface Modifications of Patterned Ultrafiltration Membranes.

机构信息

Department of Desalination and Water Treatment, Zuckerberg Institute for Water Research, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev , Sede-Boqer Campus 84990, Israel.

Department of Surgery, University of Chicago , 5841 S. Maryland Avenue, Chicago, Illinois 60637, United States.

出版信息

ACS Appl Mater Interfaces. 2016 Nov 9;8(44):30271-30280. doi: 10.1021/acsami.6b11331. Epub 2016 Oct 27.

Abstract

Understanding and restricting microbial surface attachment will enhance wastewater treatment with membranes. We report a maskless lithographic patterning technique for the generation of patterned polymer coatings on ultrafiltration membranes. Polyethylene glycol, zwitterionic, or negatively charged hydrophilic polymer compositions in parallel- or perpendicular-striped patterns with respect to feed flow were evaluated using wastewater. Membrane fouling was dependent on the orientation and chemical composition of the coatings. Modifications reduced alpha diversity in the attached microbial community (Shannon indices decreased from 2.63 to 1.89) which nevertheless increased with filtration time. Sphingomonas species, which condition membrane surfaces and facilitate cellular adhesion, were depleted in all modified membranes. Microbial community structure was significantly different between control, different patterns, and different chemistries. This study broadens the tools for surface modification of membranes with polymer coatings and for understanding and optimization of antifouling surfaces.

摘要

了解并限制微生物表面附着将增强膜法废水处理效果。我们报告了一种无掩模光刻图案化技术,用于在超滤膜上生成图案化聚合物涂层。采用废水评估了与进料流平行或垂直的平行条纹或垂直条纹图案中的聚乙二醇、两性离子或带负电荷的亲水性聚合物组合物。膜污染取决于涂层的取向和化学成分。修饰降低了附着微生物群落的 alpha 多样性(香农指数从 2.63 降低到 1.89),但随着过滤时间的增加而增加。所有改性膜中都耗尽了能够调节膜表面并促进细胞黏附的鞘氨醇单胞菌属物种。微生物群落结构在对照、不同图案和不同化学物质之间有显著差异。本研究拓宽了用聚合物涂层对膜进行表面改性以及理解和优化抗污表面的工具。

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