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Study on performance of ultrafiltration membrane-based pretreatment for application to seawater reverse osmosis desalination

机译:超滤膜预处理在海水反渗透淡化中的性能研究

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The objective of the work was to study at lab-scale the efficiency of hybrid process- coupling powdered activated carbon (PAC) adsorption or FeCl_3 coagulation and UF- for marine organic matter removal. Regenerated cellulose membrane with 30 kDa and actual seawater from Mediterranean Sea were used. The coagulant was FeCl_3 and adsorbents were two PAC types, with different surface area and pore size distribution. The results showed that PAC adsorption/UF performed higher efficiency in terms of organic removal than FeCl_3 coagulation/UF. Organic matter removal up to 50% was obtained for a PAC dose of 200 mg/L. According to high performance size exclusion chromatography (HP-SEC) analysis, the organics removed by PAC/UF are approximately 10 kDa. Therefore, the effect of PAC adsorption was deeply evaluated in terms of UF membrane fouling rate. The fouling rate was reduced when increasing PAC dose for both PAC types, in particular when PAC with a higher BET surface area and larger fraction of micropores was used. On the other hand, the results showed that UF unit could highly reduce SDI_3 from 26 to 9. The addition of PAC and FeCl_3 to UF allowed a further reduction of SDI_3 from 9 to 4–6.
机译:这项工作的目的是在实验室规模上研究混合过程耦合的粉状活性炭(PAC)吸附或FeCl_3凝聚和UF-去除海洋有机物的效率。使用了具有30 kDa的再生纤维素膜和来自地中海的实际海水。凝结剂为FeCl_3,吸附剂为两种PAC类型,具有不同的表面积和孔径分布。结果表明,与FeCl_3混凝/ UF相比,PAC吸附/ UF去除有机物的效率更高。对于200 mg / L的PAC剂量,有机物去除率高达50%。根据高性能尺寸排阻色谱(HP-SEC)分析,通过PAC / UF去除的有机物约为10 kDa。因此,根据超滤膜结垢率深入评估了PAC的吸附效果。当增加两种PAC类型的PAC剂量时,结垢率降低,特别是当使用具有较高BET表面积和较大微孔分数的PAC时。另一方面,结果表明,超滤装置可将SDI_3从26降低至9。将PAC和FeCl_3加入超滤可将SDI_3从9进一步降低至4-6。

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