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Membrane fouling and its control in drinking water membrane filtration process

机译:饮用水膜过滤过程中的膜污染及其控制

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摘要

Treatment of surface water in the presence of natural organic matters (NOM) becomes a challenging issue to meet stringent rules of Safe Drinking Water Act (SDWA). Ultrafiltration (UF) membrane is emerging as an efficient technology for the purpose of potable water production. However, membrane fouling, ageing and chemical cleaning affect its performance and properties.The effects of ageing and chemical cleaning on performance and properties of the membrane were studied using UF membrane from full scale drinking water membrane filtration plant and simulated chemical cleaning sequences in laboratory. Organic and inorganic foulants, and membrane properties such as tensile strength, membrane morphology and surface functional groups were characterized using various analytical tools. The results from simulated chemical cleaning experiments were consistent with those from a full-scale plant, in terms of the effects of chemical cleaning on membrane properties. The results show that membrane ageing deteriorated the tensile strength and membrane integrity, and led to accumulation of foulants. Hypochlorite cleaning resulted in a decrease in membrane tensile strength, while citric acid cleaning had limited effect on membrane tensile strength. The decrease in membrane tensile strength correlated to a decrease in intensity of functional groups measured by FTIR. The results suggest that hypochlorite concentration and cleaning time should be minimized to reduce their impacts on membrane properties.Additionally, membrane cleaning strategies (cleaning agents? concentration, cleaning time, pH, backwash frequency, and production time) currently used in Bare Point Water Treatment Plant were studied using a ZW-1000 pilot scale plant. The membrane performance in terms of permeability recovery was assessed using the recorded data; and organic and inorganic foulants were analyzed using Total Organic Carbon analyser (TOC) and Inductively Coupled Plasma-Atomic Emission Spectroscopy (ICP-AES). In sodium hypochlorite (NaClO) cleaning, lower concentrations combined with longer soak time achieved higher permeability recovery, with TOC results indicating that the major foulants responsible for permeability decrease were organic. Similarly, the results of citric acid cleaning suggest that lower pH was more effective in permeability recovery.Furthermore, the effect of production cycle or backwash frequency on the membrane performance was also studied to optimize water recovery; the results revealed that the membrane performances, fouling rate in terms of rate of change of TMP, recovery (%), and organic fouling depended on permeate cycle length or back wash frequency. This research concludes with the hypothesis that membrane fouling and ageing deteriorate membrane performance, whereas chemical cleaning agent (NaClO) enhances membrane performance and properties, respectively.
机译:要满足《安全饮用水法》(SDWA)的严格规则,在天然有机物(NOM)存在下处理地表水将成为一个具有挑战性的问题。超滤(UF)膜正在成为一种用于饮用水生产的有效技术。但是,膜的结垢,老化和化学清洗会影响膜的性能和性能。使用全尺寸饮用水膜过滤厂的超滤膜,并在实验室模拟模拟的清洗顺序,研究了老化和化学清洗对膜性能和性能的影响。使用各种分析工具对有机和无机污垢以及膜性能(例如拉伸强度,膜形态和表面官能团)进行了表征。就化学清洗对膜性能的影响而言,模拟化学清洗实验的结果与大型工厂的结果一致。结果表明,膜老化会降低拉伸强度和膜完整性,并导致积垢。次氯酸盐清洗导致膜的拉伸强度降低,而柠檬酸清洗对膜的拉伸强度影响有限。膜拉伸强度的降低与通过FTIR测量的官能团强度的降低相关。结果表明,次氯酸盐的浓度和清洗时间应最小化,以减少对膜性能的影响。此外,裸露点水处理中目前使用的膜清洗策略(清洗剂?浓度,清洗时间,pH,反洗频率和生产时间)使用ZW-1000中试规模的工厂对工厂进行了研究。使用记录的数据评估了膜的渗透性恢复性能。使用总有机碳分析仪(TOC)和电感耦合等离子体原子发射光谱法(ICP-AES)分析有机和无机污垢。在次氯酸钠(NaClO)清洁中,较低的浓度和较长的浸泡时间可实现较高的渗透率恢复,TOC结果表明,导致渗透率下降的主要污垢是有机物。同样,柠檬酸清洗的结果表明较低的pH值对渗透率的恢复更有效。此外,还研究了生产周期或反洗频率对膜性能的影响,以优化水的回收率。结果表明,膜性能,结垢率(以TMP的变化率,回收率(%)和有机结垢)取决于渗透周期长度或反洗频率。该研究的结论是膜污染和老化会降低膜性能,而化学清洁剂(NaClO)分别会增强膜性能和性能。

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    Bogati Ram Chandra;

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  • 年度 2014
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