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Engineered biofiltration for ultrafiltration fouling mitigation and disinfection by-product precursor control

机译:专门设计的生物过滤技术,可减轻超滤污垢并控制副产物的消毒副产物

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A pilot-scale study was conducted to evaluate the impact of several biofiltration enhancement strategies in terms of organic removal to reduce disinfection by-product (DBP) formation potential and mitigate ultrafiltration (UF) fouling. Strategies included nutrient addition (nitrogen and phosphorus) to optimize metabolic degradation of organics, use of hydrogen peroxide (H_2O_2, peroxide) to improve filter run times, and the application of in-line aluminum sulphate (alum) for biopolymer removal. The impact of media type on performance was also examined (anthracite versus granular activated carbon (GAC)). Passive biofiltration (without enhancement) reduced dissolved organic carbon (~5%), biopolymers (~20%), and trihalomethane and haloacetic acid precursors (~20% and ~12%, respectively) while mitigating UF irreversible fouling (~60%). Nutrient addition was not observed to enhance biological performance. Addition of 0.5 mg/L hydrogen peroxide decreased head loss by up to 45% without affecting organic removal; however at a dosage of 1 mg/L, it negatively impacted both UF fouling and DBP precursor removal. In-line alum addition prior to biofiltration (<0.5 mg/L) improved UF fouling control by up to 40%, without sacrificing head loss. Overall, GAC provided superior performance when compared to anthracite.
机译:进行了一项中试规模的研究,以评估几种生物滤池增强策略在去除有机物方面的影响,以减少消毒副产物(DBP)的形成潜力并减轻超滤(UF)结垢。策略包括添加营养(氮和磷)以优化有机物的代谢降解,使用过氧化氢(H_2O_2,过氧化物)以改善过滤器运行时间,以及应用在线硫酸铝(铝)去除生物聚合物。还检查了介质类型对性能的影响(无烟煤与颗粒状活性炭(GAC))。被动生物过滤(不增强)可减少溶解的有机碳(约5%),生物聚合物(约20%)以及三卤甲烷和卤代乙酸前体(分别约20%和约12%),同时减少超滤不可逆结垢(约60%)。 。未观察到添加营养物以增强生物学性能。添加0.5 mg / L的过氧化氢可将水头损失最多降低45%,而不会影响有机物的去除;但是,当剂量为1 mg / L时,它对超滤结垢和DBP前体去除均产生负面影响。在生物过滤之前添加在线明矾(<0.5 mg / L)可将超滤结垢控制提高40%,而不会损失水头损失。总体而言,与无烟煤相比,GAC的性能更高。

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