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Disinfection by-product formation from the chlorination and chloramination of amines

机译:胺的氯化和氯化作用形成的消毒副产物

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摘要

This study investigated the relative effect of chlorination and chloramination on DBP formation from seven model amine precursor compounds, representative of those commonly found in natural waters, at pH 6, 7 and 8. The quantified DBPs included chloroform, dichloroacetonitrile (DCAN), trichloroacetonitrile (TCAN) and chloropicrin (trichloronitromethane). The aggregate formation (i.e. the mass sum of the formation from the individual precursors) of chloroform, DCAN and TCAN from all precursors was reduced by respectively 75–87%, 66–90% and 89–93% when considering pre-formed monochloramine compared to chlorine. The formation of both haloacetonitriles decreased with increasing pH following chlorination, but formation after chloramination was relatively insensitive to pH change. The highest formation of chloropicrin was from chloramination at pH 7. These results indicate that, while chloramination is effective at reducing the concentrations of trihalomethanes and haloacetonitriles in drinking water compared with chlorination, the opposite is true for the halonitromethanes.
机译:这项研究调查了氯化和氯化作用对从7种胺模型前体化合物(代表天然水在pH 6、7和8中常见)形成DBP的相对影响。定量DBP包括氯仿,二氯乙腈(DCAN),三氯乙腈( TCAN)和氯吡啶(三氯硝基甲烷)。考虑到预先形成的一氯胺相比,所有前体的氯仿,DCAN和TCAN的总形成量(即各个前体形成的质量总和)分别减少了75–87%,66–90%和89–93%去氯。氯化后,两个卤代乙腈的形成均随pH的增加而降低,但氯化后的形成对pH的变化相对不敏感。氯氰菊酯的最高形成来自pH值为7的氯化。这些结果表明,与氯化相比,氯化能有效降低饮用水中三卤甲烷和卤代乙腈的浓度,而卤代硝基甲烷则相反。

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