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首页> 外文期刊>The Science of the Total Environment >Characterization of brominated disinfection byproducts formed during chloramination of fulvic acid in the presence of bromide
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Characterization of brominated disinfection byproducts formed during chloramination of fulvic acid in the presence of bromide

机译:表征在存在溴化物的情况下对黄腐酸进行氯化时形成的溴化消毒副产物的特征

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摘要

To date, study on the speciation of brominated disinfection byproducts (Br-DBPs), which have higher cytotoxicity and genotoxicity than their analogous chlorinated DBPs (Cl-DBPs), formed in chloramination is still limited. In this study, the previous unknown Br-DBPs formed during chloramination of artificial drinking water were explored with electrospray ionization ultrahigh resolution Fourier transform ion cyclotron resonance mass spectrometry (ESI FT-ICR MS). In total, 193 formulae of one bromine containing Br-DBPs and 5 formulae of two bromine containing Br-DBPs were detected in the chloraminated artificial drinking water sample. Compared to Br-DBPs formed in chlorination, Br-DBPs formed in chloramination have relatively high O/C ratio for the same nominal molecular mass. More than 63% of the Br-DBPs formed during chloramination can be classified as aromatic molecules or polycyclic aromatic molecules, according to their modified aromaticity index (AImod). Further investigation on the change of precursor SRFA molecules during chloramination showed that SRFA molecules with high O/C ratio and low H/C ratio were more reactive and decreased significantly in relative abundance during chloramination. Precursor SRFA molecules with high degree of oxidation and high unsaturation were preferred to form Br-DBPs during chloramination. The results reported in this study provide valuable information on Br-DBPs formed during chloramination and may help us in minimizing DBPs during chloramination.
机译:迄今为止,对溴化消毒副产物(Br-DBPs)的形态研究仍比在氯化过程中形成的类似氯化物DBPs(Cl-DBPs)具有更高的细胞毒性和基因毒性,对此的研究仍然很有限。在这项研究中,通过电喷雾电离超高分辨率傅里叶变换离子回旋共振质谱(ESI FT-ICR MS)探索了在人工饮用水加氯过程中形成的未知的Br-DBP。在加氯的人工饮用水样品中,总共检测到193种配方的一种含溴Br-DBP和5种配方的两种含溴Br-DBP。与在氯化中形成的Br-DBP相比,在相同的标称分子量下,在氯化中形成的Br-DBP具有相对较高的O / C比。根据氯化物改性后的芳香度指数(AImod),在氯化过程中形成的Br-DBP的63%以上可分为芳香族分子或多环芳香族分子。对氯化过程中前体SRFA分子变化的进一步研究表明,高O / C比和低H / C比的SRFA分子在氯化过程中具有更高的反应性和相对丰度的显着降低。具有高氧化度和高不饱和度的前体SRFA分子优选在氯化过程中形成Br-DBP。这项研究报告的结果提供了有关氯化过程中形成的Br-DBPs的有价值的信息,并可能有助于我们将氯化过程中的DBPs减至最少。

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