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Evaluation of forward osmosis membrane performance by using wastewater treatment plant effluents as feed solution

机译:通过使用废水处理植物流出物作为饲料溶液评估前渗透膜效果的评价

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摘要

Currently, there is a growing emphasis on seawater desalination and wastewater reuse around the world. Reverse osmosis (RO) is typically used for both seawater desalination and wastewater reuse. As an alternative technology of RO, forward osmosis-reverse osmosis (FO-RO) hybrid system has recently attracted attention. To select suitable membrane and feed water for this process, the performance of forward osmosis (FO) membrane according to the types of membrane and feed water quality was evaluated in this study, including three types of FO membrane (membrane I/II/III) and three types of feed water (1st/2nd/3rd wastewater treatment plant effluents, WWTP Efs). Despite high structural parameter, membrane II showed the highest water permeability (5.37LMH/bar) with highest water flux (around 27.1LMH) using draw solution of 0.5M NaCl (feed solution: 5mM NaCl). In fouling test, there was severe water flux decline when 1st WWTP Ef was used as feed solution compared to the case when 2nd/3rd WWTP Efs was supplied. Membrane III showed higher fouling resistance due to its chemistry characteristic compared to membrane I or II. Due to complex feed water characteristics, FO reversibility was lower compared to that of a previous study. Therefore, to optimize FO-RO hybrid system, FO membrane performance should be tested with different membrane characteristics and feed water qualities to develop suitable cleaning or pretreatment method and strategy to increase the reversibility of membranes.
机译:目前,越来越强调了海水淡化和世界各地的废水再使用。反渗透(RO)通常用于海水淡化和废水再利用。作为RO的替代技术,前期渗透反渗透(FO-RO)混合系统最近引起了关注。选择合适的膜和进料水进行该过程,在本研究中评估了根据膜和饲料水质类型的前渗透(Fo)膜的性能,包括三种类型的FO膜(膜I / II / III)和三种类型的饲料水(1 / 2nd / 3rd废水处理植物流出物,WWTP EFS)。尽管具有高结构参数,但使用0.5M NaCl(进料溶液:5mM NaCl)的汲取溶液,膜II具有最高的水渗透率(5.37LmH / bar),水渗透率最高(约27.1ml)(饲料溶液:5mm NaCl)。在污垢测试中,与提供2ND / 3RDWWTP EFS的情况相比,当使用第1wWTP EF作为饲料溶液时,存在严重的水通量下降。与膜I或II相比,膜III由于其化学特性而显示出更高的污垢抗性。由于复杂的饲料特性,与先前的研究相比,Fo Refersibe较低。因此,为了优化FO-RO杂种系统,应用不同的膜特性测试膜性能,并饲料水性质量来开发合适的清洁或预处理方法和策略,以增加膜的可逆性。

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