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Prevention of PVDF ultrafiltration membrane fouling by coating MnO2 nanoparticles with ozonation

机译:用臭氧化法涂覆mnO2纳米粒子防止pVDF超滤膜污染

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摘要

Pre-treatment is normally required to reduce or control the fouling of ultrafiltration (UF) membranes in drinking water treatment process. Current pre-treatment methods, such as coagulation, are only partially effective to prevent long-term fouling. Since biological activities are a major contributor to accumulated fouling, the application of an oxidation/disinfection step can be an effective complement to coagulation. In this study, a novel pre-treatment method has been evaluated at laboratory scale consisting of the addition of low dose ozone into the UF membrane tank after coagulation and the use of a hollow-fibre membrane coated with/without MnO2 nanoparticles over a test period of 70 days. The results showed that there was minimal fouling of the MnO2 coated membrane (0.5 kPa for 70 days), while the uncoated membrane experienced both reversible and irreversible fouling. The difference was attributed to the greatly reduced presence of bacteria and organic matter because of the catalytic decomposition of ozone to hydroxyl radicals and increase of the hydrophilicity of the membrane surface. In particular, the MnO2 coated membrane had a much thinner cake layer, with significantly less polysaccharides and proteins, and much less accumulated organic matter within the membrane pores.
机译:通常需要进行预处理,以减少或控制饮用水处理过程中超滤(UF)膜的结垢。当前的预处理方法(例如凝结)只能部分有效地防止长期结垢。由于生物活性是造成积垢的主要因素,因此氧化/消毒步骤的应用可以有效地凝结。在这项研究中,已经在实验室规模上评估了一种新颖的预处理方法,该方法包括在凝结后向UF膜槽中添加低剂量臭氧,以及在测试期间使用涂覆/不涂覆MnO2纳米粒子的中空纤维膜70天。结果表明,MnO2涂层膜的污垢极少(0.5?kPa,持续70天),而未涂覆的膜同时经历了可逆和不可逆的污染。这种差异归因于细菌和有机物的大量减少,这是因为臭氧催化分解为羟基自由基并增加了膜表面的亲水性。尤其是,用MnO2涂覆的膜的滤饼层要薄得多,多糖和蛋白质明显减少,膜孔中的有机物积聚少得多。

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    Brown M; Graham NJD;

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  • 年度 2016
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