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NOM's role in bromine and bromate formation during ozonation

机译:NOM在臭氧化过程中在溴和溴酸盐形成中的作用

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Natural organic matter (NOM) can influence the rate and extent of bromide oxidation during ozonation and affect disinfection by-product (DBP) formation. In batch ozonation experiments of model water samples under similar conditions, variable concentrations of bromate and organobromine formed in the presence of different NOM isolates. Differences in the source and composition of NOM, as measured by the ratio of specific ultraviolet absorbance at 254 nm to dissolved organic carbon, can account for variations in the rate of ozone and hydroxyl (HO) radical consumption by NOM. The presence of NOM significantly reduced the bromate formation relative to NOM-free water. The mechanism for the decrease in bromate formation has two components: (1) NOM reacts directly with ozone and HO radicals to reduce the amount of oxidant available for bromide and bromine oxidation, respectively, and (2) NOM reacts with bromine, the main intermediate in the formation of DBPs.
机译:天然有机物(NOM)可以影响臭氧化过程中溴化物氧化的速率和程度,并影响消毒副产物(DBP)的形成。在相似条件下的模型水样的批量臭氧化实验中,在存在不同NOM分离物的情况下,形成了浓度可变的溴酸盐和有机溴。通过在254 nm下的特定紫外线吸收率与溶解的有机碳之比来衡量,NOM的来源和组成上的差异可以解释NOM消耗的臭氧和羟基(HO)自由基的速率的变化。相对于不含NOM的水,NOM的存在显着减少了溴酸盐的形成。减少溴酸盐形成的机理有两个组成部分:(1)NOM直接与臭氧和HO自由基反应,分别减少可用于溴化物和溴氧化的氧化剂量;(2)NOM与主要中间体溴反应DBP的形成。

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