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The Role of Humic Acid PP Beads and pH with Water Backwashing in a Hybrid Water Treatment of Multichannel Alumina Microfiltration and PP Beads

机译:腐殖酸PP珠和pH值与水反冲洗在多通道氧化铝微滤和PP珠混合水处理中的作用

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摘要

Photooxidation oxidizes most organic compounds by mineralizing them to small inorganic molecules. In this study, the effects of dissolved organic matter (DOM), pH, and polypropylene (PP) beads concentration on membrane fouling were investigated in a hybrid water treatment process consisting of seven-channel alumina microfiltration (pore size 1.0 μm) and pure PP beads water backwashing with UV irradiation for photooxidation. The synthetic feed was prepared with humic acid and kaolin and flowed inside the microfiltration (MF) membrane. The permeate contacted the PP beads fluidized in the gap of the membrane and module with outside UV irradiation. Membrane fouling resistance ( ) increased dramatically with an increase in the concentration of humic acid (HA) from 6 mg/L to 8 mg/L. The treatment efficiency of DOM increased dramatically, from 14.3% to 49.7%, with an increase in the concentration of HA. The decreased with an increase of PP beads concentration. However, maximum permeate volume ( ) was acquired at 5 g/L of PP beads. The maximal treatment efficiency of DOM was 51.3% at 40 g/L of PP beads. The increased with an increase in the pH of feed, and the maximum was acquired at a pH of 5. The maximal treatment efficiency of DOM was 52.5% at pH 9.
机译:光氧化作用是将大多数有机化合物矿化成小的无机分子,从而将它们氧化。在这项研究中,在由七通道氧化铝微滤(孔径为1.0μm)和纯PP组成的混合水处理过程中,研究了溶解有机物(DOM),pH和聚丙烯(PP)珠浓度对膜污染的影响。珠水用紫外线照射进行反冲洗以进行光氧化。用腐植酸和高岭土制备合成饲料,并在微滤(MF)膜内流动。渗透物使流化在膜和组件间隙中的PP珠与外部UV辐射接触。随着腐殖酸(HA)浓度从6 mg / L增加到8 mg / L,膜耐污染性()显着提高。随着HA浓度的增加,DOM的治疗效率从14.3%显着提高到49.7%。随着PP珠浓度的增加而降低。但是,最大渗透量()是在5 g / L的PP珠粒中获得的。 PP珠40 g / L时DOM的最大处理效率为51.3%。随着饲料pH值的增加而增加,在pH值为5时获得最大值。在pH值为9时,DOM的最大处理效率为52.5%。

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