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Formation of brominated disinfection byproducts from natural organic matter isolates and model compounds in a sulfate radical-based oxidation process

机译:在基于硫酸根的氧化过程中,由天然有机物分离物和模型化合物形成溴化消毒副产物

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摘要

A sulfate radical-based advanced oxidation process (SR-AOP) has received increasing application interest for the removal of water/wastewater contaminants. However, limited knowledge is available on its side effects. This study investigated the side effects in terms of the production of total organic bromine (TOBr) and brominated disinfection byproducts (Br-DBPs) in the presence of bromide ion and organic matter in water. Sulfate radical was generated by heterogeneous catalytic activation of peroxymonosulfate. Isolated natural organic matter (NOM) fractions as well as low molecular weight (LMW) compounds were used as model organic matter. Considerable amounts of TOBr were produced by SR-AOP, where bromoform (TBM) and dibromoacetic acid (DBAA) were identified as dominant Br-DBPs. In general, SR-AOP favored the formation of DBAA, which is quite distinct from bromination with HOBr/OBr- (more TBM production). SR-AOP experimental results indicate that bromine incorporation is distributed among both hydrophobic and hydrophilic NOM fractions. Studies on model precursors reveal that LMW acids are reactive TBM precursors (citric acid > succinic acid > pyruvic acid > maleic acid). High DBAA formation from citric acid, aspartic acid, and asparagine was observed; meanwhile aspartic acid and asparagine were the major precursors of dibromoacetonitrile and dibromoacetamide, respectively.
机译:基于硫酸根的高级氧化工艺(SR-AOP)在去除水/废水中的污染物方面受到越来越多的应用兴趣。但是,关于其副作用的知识有限。这项研究调查了在水中存在溴离子和有机物的情况下,总有机溴(TOBr)和溴化消毒副产物(Br-DBPs)产生的副作用。硫酸根是通过过氧单硫酸盐的非均相催化活化而产生的。分离的天然有机物(NOM)馏分以及低分子量(LMW)化合物均用作模型有机物。 SR-AOP产生了大量的TOBr,其中溴仿(TBM)和二溴乙酸(DBAA)被确定为主要的Br-DBP。总的来说,SR-AOP促进了DBAA的形成,这与HOBr / OBr-(更多的TBM产生)的溴化作用截然不同。 SR-AOP实验结果表明,溴的掺入分布在疏水性和亲水性NOM组分之间。对模型前体的研究表明,LMW酸是反应性TBM前体(柠檬酸>琥珀酸>丙酮酸>马来酸)。观察到由柠檬酸,天冬氨酸和天冬酰胺形成的高DBAA。同时,天冬氨酸和天冬酰胺分别是二溴乙腈和二溴乙酰胺的主要前体。

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