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Tunable pore size micro/submicron-sieve membranes by soft lithographyt

机译:通过微光刻技术可调节孔径的微/亚微米筛膜

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摘要

Membrane filtration is widely used for advanced water and wastewater treatments because of many favorable features it offers. Critical issues in membrane processes are membrane fouling as well as tortuous and broad size distribution of membrane pores. In this study, micro- and submicron-sieve membranes with uniform, non-tortuous pores were fabricated using a soft-lithographic technique. Due to the precisely controlled pore size, spatial distribution and non-tortuous quality, the membrane flux per surface porosity was shown to be greatly enhanced in comparison with conventional membranes with a tortuous pore structure. Furthermore, the solventless UV-curable polyurethane acrylate (PUA), employed as the membrane material, has lower surface energy leading to much better anti-biofouling performance than other commercial membrane materials. The soft-lithographic technique and UV-curable polyurethane acrylate (PUA) introduced here would open a horizon to a new generation of membranes with anti-fouling capability.
机译:膜过滤由于其提供的许多有利功能而广泛用于高级水和废水处理。膜工艺中的关键问题是膜污染以及膜孔的曲折和宽尺寸分布。在这项研究中,使用软光刻技术制造了具有均匀,非曲折孔的微孔筛和亚微米筛孔膜。由于精确控制的孔径,空间分布和不曲折的质量,与具有曲折孔结构的常规膜相比,单位表面孔隙率的膜通量显示出极大的提高。此外,用作膜材料的无溶剂UV固化聚氨酯丙烯酸酯(PUA)具有较低的表面能,从而比其他市售膜材料具有更好的抗生物污垢性能。此处介绍的软光刻技术和可紫外线固化的聚氨酯丙烯酸酯(PUA)将为具有防污功能的新一代膜打开一个视野。

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