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Hybrid Forward Osmosis–Nanofiltration for Wastewater Reuse: System Design

机译:混合正渗透-纳滤用于废水回用:系统设计

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摘要

The design of a hybrid forward osmosis–nanofiltration (FO–NF) system for the extraction of high-quality water from wastewater is presented here. Simulations were performed based on experimental results obtained in a previous study using real wastewater as the feed solution. A sensitivity analysis, conducted to evaluate the influence of different process parameters, showed that an optimum configuration can be designed with (i) an influent draw solution osmotic pressure equal to 15 bar and (ii) a ratio of influent draw solution to feed solution flow rate equal to 1.5:1. With this configuration, the simulations suggested that the overall FO–NF system can achieve up to 85% water recovery using Na2SO4 or MgCl2 as the draw solute. The modular configuration and the size of the NF stage, accommodating approximately 7000 m2 of active membrane area, was a function of the properties of the membranes selected to separate the draw solutes and water, while detailed simulations indicated that the size of the FO unit might be reduced by adopting a counter-current configuration. Experimental tests with samples of the relevant wastewater showed that Cl- and Mg2+-based draw solutes would be associated with larger membrane fouling, possibly due to their interaction with the other substances present in the feed solution. However, the results suggest that fouling would not significantly decrease the performance of the designed system. This study contributes to the further evaluation and potential implementation of FO in water reuse systems.
机译:本文介绍了一种用于从废水中提取高质量水的正向渗透-纳滤混合系统(FO-NF)的设计。基于先前研究中使用真实废水作为进料溶液获得的实验结果进行了模拟。进行敏感性分析以评估不同工艺参数的影响,结果表明可以设计最佳配置,其中(i)进水汲取溶液的渗透压等于15 bar,以及(ii)进水汲取溶液与进料溶液流量的比值比率等于1.5:1。通过这种配置,模拟结果表明,使用Na2SO4或MgCl2作为汲取溶质,整个FO-NF系统可实现高达85%的水回收率。 NF级的模块结构和尺寸可容纳约7000 m 2 的活性膜面积,这取决于所选择的分离抽提溶质和水的膜的性能,同时详细的模拟结果表明通过采用逆流配置可以减小FO单元的尺寸。对相关废水样品进行的实验测试表明,基于Cl --和Mg 2 + 的抽提溶质可能与较大的膜污染有关,这可能是由于它们与水的相互作用所致。饲料溶液中存在其他物质。但是,结果表明结垢不会显着降低设计系统的性能。这项研究有助于进一步评估和评价在水回用系统中使用FO的可能性。

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