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Removal of low-molecular weight DBPs and inorganic ions for characterization of high-molecular weight DBPs in drinking water

机译:去除低分子量DBP和无机离子以表征饮用水中的高分子量DBP

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High-molecular weight (MW) halogenated disinfection byproducts (DBPs) may cause adverse health effects. In this work several issues related to the better separation and characterization of the high MW halogenated DBPs (MW > 500 Da) were studied. Ultra-filtration (UF) coupled with a nominal 500-Da membrane was employed to flush out low MW DBPs and inorganic ions. Two procedures, intermittent UF and continuous UF, were used and compared. The results demonstrate that haloacetic acids, chloride and sodium ions could be effectively flushed out, and most of phosphate ions could be flushed out for a given dilution number or sufficient Milli-Q water. The size exclusion chromatograms indicate that haloacetic acids and trihalomethanes were not bound to Suwannee River fulvic acid (SRFA); 2,4,6-trichlorophenol might form some binding with SRFA, but it appeared to be very weak and readily broken up when passing along the size exclusion column. The octanol-water partition coefficients of low MW DBPs and the properties of humic substances seem to play key roles in determining the formation of possible bindings between low MW DBPs and humic substances.
机译:高分子量(MW)的卤化消毒副产物(DBP)可能对健康造成不利影响。在这项工作中,研究了与更好地分离和表征高分子量卤代DBP(MW> 500 Da)有关的几个问题。采用超滤(UF)结合标称500-Da膜来冲洗掉低分子量DBP和无机离子。使用了两种方法,即间歇超滤和连续超滤。结果表明,对于给定的稀释倍数或足够的Milli-Q水,卤乙酸,氯离子和钠离子可以被有效地冲洗掉,而大多数磷酸根离子可以被冲洗掉。尺寸排阻色谱图表明,卤乙酸和三卤甲烷未与Suwannee River富里酸(SRFA)结合; 2,4,6-三氯苯酚可能与SRFA形成某些结合,但当通过尺寸排阻色谱柱时,它似乎非常弱并且容易破碎。低分子量DBP的辛醇-水分配系数和腐殖质的特性似乎在决定低分子量DBP与腐殖质之间可能结合的形成中起着关键作用。

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