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Novel ultrafiltration membranes from low-fouling copolymers for RO pretreatment applications

机译:来自RO预处理应用的低污染共聚物的新型超滤膜

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For a consistent and reliable ultrafiltration (UF) membrane operation, the membrane flux level has always been determined conservatively so that fouling rate is controllable, and therefore, chemical cleaning requirements are minimized. A better solution is to prevent the fouling to happen in the first place by modifying the surface properties of the membrane materials. This paper presents novel approaches to improve the fouling-propensity performance of existing UF membranes based on polyethersulfone. More hydrophilic membranes and anti-adhesive membranes were developed by using various novel copolymers as base membrane materials or as an additive in the spinning process. Incorporating these copolymers, improved Multibore (R) fibers were produced and validated in multiple pilot trials for various applications, namely surface and wastewater purification and seawater reverse osmosis pretreatment for desalination. The paper demonstrates that, for each application, a reduced fouling propensity performance was achieved, allowing the fibers to be operated at a substantially higher flux of up to 30%. This study underscores the importance of chemistry in obtaining low-fouling and high-performance UF membranes by modifying their surface properties.
机译:对于一致且可靠的超滤(UF)膜操作,膜磁通水平始终保守地确定,使得污垢率是可控的,因此,化学清洁要求最小化。更好的解决方案是通过改变膜材料的表面性质来防止污垢在第一位置发生。本文介绍了基于聚醚砜改善现有UF膜的污垢倾向性能的新方法。通过使用各种新型共聚物作为基膜材料或作为纺丝过程中的添加剂开发更多的亲水性膜和抗粘合膜。掺入这些共聚物,在多种试验试验中生产并验证了各种应用的改进的多摩尔(R)纤维,即表面和废水净化和海水反渗透预处理进行脱盐。本文表明,对于每种应用,实现了降低的抵抗性能,使得纤维在高达30%的基本上更高的通量下操作。本研究强调了化学通过改变其表面性质来获得低污染和高性能UF膜的重要性。

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