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Foulant-foulant Interaction of Combined Micro-particulate and Organic Fouling on a Ceramic Membrane

机译:陶瓷膜上微颗粒和有机污垢的污垢-污垢相互作用

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摘要

In this study, filtration performance and fouling tendency of organic matters mixed with micro-particles on ceramic microfiltration membrane were investigated by using a pilot filtration system. In the study, four types of organic matters (Humic Acid (HA); Bovine Serum Albumins (BSA); Sodium Alginate (SA); and Octanoic Acid (OA)) and two different sizes micro-particles (0.2 mu m and 0.4 mu m) were used as the representative organic and particulate foulants in secondary wastewater, respectively. The fouling mechanism of HA corresponded to pore blocking while fouling occurred by BSA and SA due to its adsorption on to the membrane pore adsorption and gel formation inside the membrane pore, respectively. The OA formed a thin hydrophilic layer that reduced the interaction between particles and the membrane and improved the permeate flux. When particles present in the solution, they were found inside the cake layers formed by organic matters on the ceramic membrane. These particles made the cake layers more porous. This helped in increasing the filtration time and the recovery rate of the membrane after physical backwashing. Conversely, particles were the main factors that create a flux decline in the filtration of OA on the ceramic membrane.
机译:在这项研究中,通过使用中试过滤系统,研究了有机物与微粒混合后在陶瓷微滤膜上的过滤性能和结垢趋势。在这项研究中,四种有机物(腐殖酸(HA);牛血清白蛋白(BSA);海藻酸钠(SA);和辛酸(OA))和两种不同大小的微粒(0.2微米和0.4微米) m)分别用作二级废水中的代表性有机污染物和颗粒污染物。 HA的结垢机理对应于孔堵塞,而BSA和SA分别由于其吸附到膜孔上吸附和在膜孔内形成凝胶而发生结垢。 OA形成了薄的亲水层,该亲水层减少了颗粒与膜之间的相互作用并提高了渗透通量。当溶液中存在颗粒时,它们会发现在陶瓷膜上由有机物形成的饼层内部。这些颗粒使饼层更加多孔。这有助于增加物理反冲洗后的过滤时间和膜的回收率。相反,颗粒是在陶瓷膜上OA过滤中导致通量下降的主要因素。

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