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Seasonal Variations of NOM Composition and their Reactivity in a Low Humic Water

机译:笔名成分及其季节性变化反应在低水腐殖质

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摘要

Natural organic matter (NOM) and its potential to form disinfection by-products (DBFs) during water treatment are of great public health concern. Understanding the seasonal changes in NOM composition and their reactivity in DBP formation could lead to a better treatment of drinking water and a more consistent water quality. NOM from the Terkos Lake was fractionated and characterized by XAD resin adsorption and ultrafiltration (UF) techniques during four different seasons within a year. XAD fraction analysis indicates that the HPI (38%) and the TPI (21%) were the dominant chemical fractions as DOC masses across the sampling period. Moreover, the fractions contributing to the most UV254 absorbance were HPO, which accounted for more than 72% of total UV_(254). It was found that the percentages of UV254 of HPI and TPI showed significant amount of variation with coefficients of variation of 48% (HPI) and 35% (TPI), respectively. Moreover, it was concluded that the HPO fraction was the primary THM precursor, which contributed more than 48%, and while the primary fraction of HAA precursors was found to be TPI, accounting for more than 47%) of total HAAFP with exceptions in fanuary 2011. As obviously seen in this study, the hydrophobic constituents in Terkos Lake water are on the low end of the spectrum in terms of their reactivity to form HAAs. In the context of THM reactivity, the physical properties (i.e., moleculer size) of Terkos Lake NOM are more important than their chemical properties (i.e., aromaticity). On the other hand, the predominant fraction as the source of HAAs precursors was found to be with the TPI and HPI chemical fractions.
机译:天然有机物(笔名)及其潜力形成消毒副产物(DBFs)在水治疗的公共卫生问题。了解以前的季节性变化成分和形成类似的反应可能会导致一个更好的治疗喝酒吗水和更一致的水质。从Terkos分馏和湖特点是XAD树脂吸附和在四个超滤(UF)技术在一年内不同季节。分析表明,(38%)和TPI的快乐指数(21%)主要化学分数DOC大众在整个采样周期。最UV254分数导致吸光度是HPO,占更多超过72%的总UV_(254)。UV254的HPI和TPI的百分比显示大量的变异系数48%的变异(HPI)和35% (TPI)分别。HPO分数是主要THM的前兆,贡献了超过48%,而主TPI一部分HAA前体被发现,占总HAAFP超过47%)在2011年fanuary例外。这项研究中,疏水组分Terkos湖水的低端频谱的反应形成哈斯。物理性质(即分子大小)Terkos湖笔名比他们更重要化学性质(例如,芳香性)。另一方面,主要的分数的哈斯前体来源被发现TPI和HPI化学分数。

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