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

机译:低腐殖质水中NOM组成的季节性变化及其反应性

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摘要

Natural organic matter (NOM) and its potential to form disinfection by-products (DBPs) 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 UV_(254) absorbance were HPO, which accounted for more than 72% of total UV_(254). It was found that the percentages of UV_(254) 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 HAAPP with exceptions in January 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(NOM)及其在水处理过程中形成消毒副产物(DBP)的潜力备受公众健康关注。了解NOM成分的季节性变化及其在DBP形成中的反应性可以导致对饮用水的更好处理和更一致的水质。在一年中的四个不同季节中,通过XAD树脂吸附和超滤(UF)技术对Terkos Lake的NOM进行了分级和表征。 XAD分数分析表明,在整个采样期间,作为DOC质量的HPI(38%)和TPI(21%)是主要的化学分数。此外,影响最大UV_(254)吸光度的组分是HPO,占总UV_(254)的72%以上。发现HPI和TPI的UV_(254)百分比显示出显着的变化量,其变化系数分别为48%(HPI)和35%(TPI)。此外,得出的结论是,HPO前体是HPO的主要成分,占48%以上,而HAA前体的主要成分是TPI,在2011年1月例外,占HAAPP总量的47%以上。从这项研究中可以清楚地看出,就形成HAA的活性而言,捷尔科斯湖水中的疏水性成分处于光谱的低端。在THM反应性的背景下,Terkos Lake NOM的物理性质(即分子大小)比其化学性质(即芳香性)更重要。另一方面,发现作为HAAs前体来源的主要馏分与TPI和HPI化学馏分相同。

著录项

  • 来源
    《Environmental progress》 |2014年第3期|962-971|共10页
  • 作者单位

    Department of Chemical Engineering, College of Engineering, Pamukkale University, 20020, Kinikli, Denizli, Istanbul, Turkey;

    Department of Environmental Engineering, College of Engineering, Istanbul University, 34320 Avcilar, Istanbul, Turkey;

    Department of Environmental Engineering, College of Engineering, Pamukkale University, 20020, Kinikli, Denizli, Istanbul,Turkey;

    Department of Chemical Engineering, College of Engineering, Pamukkale University, 20020, Kinikli, Denizli, Istanbul, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    natural organic matter (NOM); fractionation; ultrafiltration (UF); trihalomethanes (THMs); haloacetic acids (HAAs); Istanbul;

    机译:天然有机物(NOM);分馏超滤(UF);三卤甲烷(THM);卤乙酸(HAAs);伊斯坦堡;
  • 入库时间 2022-08-17 13:28:13

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