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Characterization of isolated fractions of dissolved organic matter from sewage treatment plant and the related disinfection by-products formation potential

机译:污水处理厂分离出的溶解性有机物分离物的表征以及相关的消毒副产物形成潜力

摘要

Dissolved organic matter (DOM) in effluent from a conventional sewage treatment plant was isolated using resin adsorbents into six classes: hydrophobic bases (HoB), hydrophobic acids (HoA) and hydrophobic neutrals (HoN): hydrophilic bases (HiB), hydrophilic acids (HiA) and hydrophilic neutrals (HiN). Organic acids were the most abundant fractions of DOM. Hydrophobic organics especially hydrophobic acids were found to have higher overall disinfection by-products formation potential (DBPFP). Moreover, the potential decreased as the sequence of acids, neutrals and bases. Ultraviolet spectrophotometry at 254 nm (UV(254)), fluorescence spectroscopy, size exclusion chromatography and Fourier transform infrared spectroscopy (FTIR) were employed to characterize DOM fractions. And the relationship between the characteristics of DOM fractions and the related DBPFP was discussed in detail. It was found that UV(254) to DOC ratio (SUVA) exhibited a positive correlation with haloacetic acids (HAAs) formation potential whereas distinctive linear correlation was not observed between SUVA and trihalomethanes (THMs) formation potential. Of the fluorescence organics contained in DOM. humic acids exhibited higher chlorine reactivity than fulvic acids. Smaller molecules of humic acids produced more DBPs. Furthermore, a combination of aromatic moieties and aliphatic structures with v(C-O) groups contributed largely to the formation of DBPs. (C) 2008 Elsevier B.V. All rights reserved.
机译:使用树脂吸附剂将常规污水处理厂废水中的溶解有机物(DOM)分为六类:疏水性碱(HoB),疏水性酸(HoA)和疏水性中性(HoN):亲水性碱(HiB),亲水性酸( HiA)和亲水性中性(HiN)。有机酸是DOM中含量最高的部分。发现疏水性有机物,尤其是疏水性酸具有更高的整体消毒副产物形成潜能(DBPFP)。而且,电位随着酸,中性和碱的顺序而降低。使用254 nm的紫外分光光度法(UV(254)),荧光光谱法,尺寸排阻色谱法和傅立叶变换红外光谱法(FTIR)表征DOM组分。并详细讨论了DOM分数特征与相关DBPFP之间的关系。发现UV(254)与DOC的比例(SUVA)与卤乙酸(HAA)的形成潜力呈正相关,而在SUVA和三卤甲烷(THMs)的形成潜力之间未观察到明显的线性相关。 DOM中包含的荧光有机物。腐殖酸比黄腐酸具有更高的氯反应性。较小的腐殖酸分子产生更多的DBP。此外,具有v(C-O)基团的芳族部分和脂族结构的组合在很大程度上促进了DBP的形成。 (C)2008 Elsevier B.V.保留所有权利。

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