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首页> 外文期刊>Desalination and water treatment >Hybrid water treatment process of tubular carbon fiber ultrafiltration and photocatalyst-coated PP beads: treatment mechanisms and effects of water back-flushing time
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Hybrid water treatment process of tubular carbon fiber ultrafiltration and photocatalyst-coated PP beads: treatment mechanisms and effects of water back-flushing time

机译:管状碳纤维超滤与光催化剂包覆的PP珠混合水处理工艺:水反冲时间的处理机理和效果

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摘要

The effect of water back-flushing time (BT) on membrane fouling and treatment efficiency was investigated in a hybrid process of tubular carbon fiber ultrafiltration (UF) and titanium dioxide photocatalyst-coated polypropylene beads for advanced water treatment, and compared with the previous study utilizing alumina or carbon UF membranes. The resistances of membrane fouling (R-f) were highly affected by BT, and Rf decreased significantly as increasing BT. The water back-flushing prohibited membrane fouling more efficiently for the carbon fiber UF than the alumina UF. The BT did not affect the turbidity treatment in this hybrid process; however, the turbidity treatment efficiency was maximal at no back-flushing, and increased dramatically as increasing BT in the hybrid process utilizing alumina UF. The treatment efficiency of dissolved organic matters (DOM) was maximal at BT of 30 s, and increased dramatically as increasing BT. The adsorption and photo-oxidation by the PP beads and UV could not play important roles in turbid matters treatment of the hybrid process utilizing the carbon fiber or carbon UF membranes; however, the role of adsorption was significantly dominant in the hybrid process utilizing the alumina UF. Additionally, the adsorption and photo-oxidation could play more dominant roles in the DOM treatment of the hybrid process utilizing the alumina UF than those utilizing the carbon fiber or carbon UF.
机译:在管状碳纤维超滤(UF)和二氧化钛光催化剂涂覆的聚丙烯珠粒用于高级水处理的混合过程中,研究了水反吹时间(BT)对膜结垢和处理效率的影响,并将其与以前的研究进行了比较利用氧化铝或碳超滤膜。膜污染(R-f)的电阻受BT的影响很大,并且随着BT的增加,Rf显着降低。与氧化铝UF相比,水反冲洗可更有效地防止碳纤维UF膜结垢。在此混合过程中,BT不会影响浊度处理。然而,在不进行反冲洗的情况下,浊度处理效率最高,并且在使用氧化铝超滤的混合工艺中,随着BT的增加,浊度显着提高。溶解性有机物(DOM)的处理效率在BT为30 s时最大,并且随着BT的增加而显着提高。 PP珠和UV的吸附和光氧化作用在使用碳纤维或UF膜的混合过程的混浊物处理中不起重要作用。然而,在利用氧化铝超滤的混合工艺中,吸附作用显着。另外,在利用氧化铝超滤的混合过程的DOM处理中,吸附和光氧化作用比利用碳纤维或碳超滤的吸附和光氧化作用更重要。

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