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Coagulation optimization for DOC removal: pilot-scale analysis of UF fouling and disinfection byproduct formation potential

机译:DOC去除凝固优化:UF污垢和消毒副产品形成潜力的试验规模分析

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A pilot-scale study was performed to evaluate a coagulant dose which had been optimized for biopolymer (i.e., foulant) removal on subsequent ultrafiltration (UF) fouling, as well as disinfection by-product (DBP) precursor removal. Polyaluminum chloride (PACl) dosages were selected based on a point of diminishing returns for biopolymer removal (0.5 mg/L) and directly compared to that applied at full-scale (6 mg/L). Membrane fouling (reversible and irreversible) was measured as resistance increase over a 48 hour filtration period. DBP formation potential (total trihalomethanes (TTHMs), haloacetic acids (HAA(9)) and total adsorbable organic halides (AOX)) were measured in both raw and treated waters. Results of the study indicate that application of a PACl dose optimized for biopolymer reduction (0.5 mg/L) resulted in 65% less irreversible UF fouling when compared to 6 mg/L. The addition of PACl prior to the membrane resulted in up to a 14% reduction in DBP precursors relative to the UF membrane alone. A similar level of DBP precursor reduction was achieved for both 0.5 and 6 mg/L dosages. The results have implications for cost savings, which may be realized due to decreased chemical use, as well as increased membrane life associated with lower irreversible fouling rates.
机译:进行试验规模研究以评估凝结剂剂量,该剂量已经针对随后的超滤(UF)污垢的生物聚合物(即污垢)除去,以及消毒副产物(DBP)前体除去。根据生物聚合物去除(0.5mg / L)的递减的递减点,并直接与以满量程(6mg / L)相比,选择聚氯化铝(PACL)剂量。膜污染(可逆和不可逆)被测量为抗性增加,过滤时间超过48小时。在原料和处理的水中测量DBP形成电位(总三卤代甲烷(TTHMS),卤乙酸(HAA(9))和总吸附的有机卤化物(AOX))。该研究的结果表明,与6mg / L相比,针对生物聚合物还原的PACL剂量的施加优化(0.5mg / L)导致65%不可逆的UF污垢。在膜之前加入PAC1,相对于UF膜,DBP前体的增加高达14%。为0.5和6mg / L剂量达到类似的DBP前体还原水平。结果对成本节省有影响,这可能是由于化学用途减少而实现的,以及与较低不可逆的污垢率相关的膜寿命增加。

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