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Investigation of antifouling properties of polypropylene/TiO2 nanocomposite membrane under different aeration rate in membrane bioreactor system

机译:膜生物反应器系统不同通气率下聚丙烯/ TiO2纳米复合膜防污性能研究

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This paper presents the results of aeration rate effect on antifouling properties of polypropylene (PP)/TiOsub2/sub nanocomposite membrane in membrane bioreactor (MBR) system in order to oil refinery wastewater treatment. For this purpose, three levels of aeration rate with specific aeration demand per membrane area (SADm) of 0.5, 1, and 1.5?msup3/sup/msup2/suph was used. According to the obtained results, PP nanocomposite membrane showed high hydrophilicity, porosity, and high flux compared to neat PP membrane. Also, either low or high aeration rate had a negative influence on permeability and antifouling properties of neat PP and nanocomposite membranes. The analysis of fouling mechanism for both membranes based on Hermia’s model revealed that the cake formation is dominant mechanism for lower aeration rate while by increasing aeration rate, all models couldn’t predict experimental data. Meanwhile, by increasing aeration rate, chemical oxygen demand (COD) removal for activated sludge and both membranes decreased and increased, respectively.
机译:本文介绍了对膜生物反应器(MBR)系统中聚丙烯(PP)/ TiO 2 纳米复合材料膜的曝气速率影响的结果,以炼油废水处理。为此目的,使用具有0.5,1和1.5μm 3 / m 2 h的特异性曝气需求的三个曝气率。根据所得的结果,与纯PP膜相比,PP纳米复合膜显示出高亲水性,孔隙率和高通量。此外,低或高通电速率对整洁PP和纳米复合膜的渗透性和防污性能具有负面影响。基于Hermia模型的两种膜的污垢机制分析表明,蛋糕形成是较低的通气率下降的主导机制,同时通过增加曝气速率,所有模型都无法预测实验数据。同时,通过提高曝气速率,化学需氧量(COD)去除活性污泥,两种膜分别降低和增加。

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