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Natural Organic Matter Removal and Fouling in a Low Pressure Hybrid Membrane Systems

机译:低压混合膜系统中的天然有机物去除和污染

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摘要

The objective of this study was to investigate powdered activated carbon (PAC) contribution to natural organic matter (NOM) removal by a submerged MF and UF hybrid systems. It was found that filtration of surface waters by a bare MF and UF membranes removed negligible TOC; by contrast, significant amounts of TOC were removed when daily added PAC particles were predeposited on the membrane surfaces. These results support the assumption that the membranes surface properties and PAC layer structure might have considerably influential factor on NOM removal. Moreover, it was concluded that the dominant removal mechanism of hybrid membrane system is adsorption of NOM within PAC layer rather than size exclusion of NOM by both of membrane pores. Transmembrane pressure (TMP) increases with PAC membrane systems support the view that PAC adsorption pretreatment will not prevent the development of membrane pressure; on the contrary, PAC particles themselves caused membrane fouling by blocking the entrance of pores of MF and UF membranes. Although all three source waters have similar HPI content, it appears that the PAC interaction with the entrance of membrane pores was responsible for offsetting the NOM fractional effects on membrane fouling for these source waters.
机译:这项研究的目的是研究粉状活性炭(PAC)对淹没式MF和UF混合系统对天然有机物(NOM)去除的贡献。结果发现,用裸露的MF和UF膜过滤地表水可以去除可忽略不计的TOC。相反,当每天添加的PAC颗粒预先沉积在膜表面时,会去除大量的TOC。这些结果支持这样的假设,即膜的表面性质和PAC层结构可能对NOM的去除具有相当大的影响因素。此外,可以得出结论,杂化膜系统的主要去除机理是PAC层中NOM的吸附,而不是两个膜孔都排除了NOM的尺寸。 PAC膜系统的跨膜压力(TMP)升高支持以下观点:PAC吸附预处理不会阻止膜压力的发展;相反,PAC颗粒本身通过阻塞MF和UF膜的孔进入而引起膜污染。尽管所有三种源水的HPI含量均相似,但看来PAC与膜孔入口的相互作用可抵消这些源水的NOM分数对膜污染的影响。

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