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Impact of ozonation, anion exchange resin and UV/H2O2 pre-treatments to control fouling of ultrafiltration membrane for drinking water treatment

机译:臭氧处理,阴离子交换树脂和UV / H2O2预处理对控制饮用水处理超滤膜结垢的影响

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摘要

The effects of ozonation, anion exchange resin (AER) and UV/H2O2 were investigated as a pre-treatment to control organic fouling (OF) of ultrafiltration membrane in the treatment of drinking water. It was found that high molecular weight (MW) organics such as protein and polysaccharide substances were majorly responsible for reversible fouling which contributed to 90% of total fouling. The decline rate increased with successive filtration cycles due to deposition of protein content over time. All pre-treatment could reduce the foulants of a Ultrafiltration membrane which contributed to the improvement in flux, and there was a greater improvement of flux by UV/H2O2 (61%) than ozonation (43%) which in turn was greater than AER (23%) treatment. This was likely due to the effective removal/breakdown of high MW organic content. AER gave greater removal of biofouling potential components (such as biodegradable dissolved organic carbon and assimilable organic carbon contents) compared to UV/H2O2 and ozonation treatment. Overall, this study demonstrated the potential of pre-treatments for reducing OF of ultrafiltration for the treatment of drinking water.
机译:研究了臭氧处理,阴离子交换树脂(AER)和UV / H2O2作为控制饮用水处理中超滤膜有机结垢(OF)的预处理方法的效果。发现高分子量(MW)有机物(例如蛋白质和多糖物质)是造成可逆结垢的主要原因,可逆结垢占总结垢的90%。由于蛋白质含量随时间的沉积,下降速率随着连续的过滤循环而增加。所有预处理均可以减少超滤膜的结垢,从而有助于通量的提高,而UV / H2O2(61%)的通量改善比臭氧化(43%)更大,后者反过来比AER( 23%)的治疗。这可能是由于有效去除/分解了高分子量有机物所致。与UV / H2O2和臭氧化处理相比,AER可以更大程度地去除潜在的生物污垢成分(例如可生物降解的溶解有机碳和可吸收的有机碳含量)。总的来说,这项研究证明了减少饮用水超滤的预处理的潜力。

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