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Recent Advances in Preparation of Porous Polymeric Membranes by Unique Techniques and Mitigation of Fouling through Surface Modification

机译:通过独特的技术和通过表面修饰来制备多孔聚合物膜的最新进展

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摘要

In this review, modern techniques for the membrane preparation including 3D printing, phase separation micro molding, selective etching and self-assembled and non-solvent induced phase separation (SNIPS) are discussed. The article also takes account of traditional membrane preparation techniques such as phase inversion, sintering, track etching and electrospinning. Although, there is plenty of literature exists on the preparation and tailoring of membrane properties, there are still challenges to develop and establish a reliable membrane fabrication method with high flux, selectivity and anti-fouling properties. Hydrophobic polymers are more prone to foul due to its low surface energy compared to hydrophilic polymers. Fouling resistance of membrane against microbes and proteins had been significantly improved by the use of nanoparticles, and modification with hydrophilic polymers. Mussel-inspired coating and amyloid proteins are also recently found to have excellent antibacterial activity are also reviewed. Hence, a broad understanding of structure and properties is essential for further development and progress in membrane technology for water purification.
机译:在这篇综述中,讨论了包括3D打印,相分离微型成型,选择性蚀刻和自组装和非溶剂诱导相位分离(SNIP)在内的现代技术。本文还考虑了传统的膜制备技术,例如相位反转,烧结,轨道蚀刻和静电纺丝。虽然,关于膜特性的制备和剪裁存在许多文献,但仍有挑战和建立具有高通量,选择性和抗粉状特性的可靠膜制造方法。与亲水性聚合物相比,疏水性聚合物的表面能低,因此更容易犯规。膜对微生物和蛋白质的抗性能力通过使用纳米颗粒以及用亲水性聚合物的修饰显着提高。最近还发现,贻贝启发的涂层和淀粉样蛋白具有出色的抗菌活性。因此,对结构和特性的广泛理解对于净水膜技术的进一步发展和进步至关重要。

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