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Iodination of Dimethenamid in Chloraminated Water: Active Iodinating Agents and Distinctions between Chlorination, Bromination, and Iodination

机译:氯化水中二甲烯胺的碘化:活性碘化剂以及氯化,溴化和碘化之间的区别

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摘要

Few studies have elucidated the agent(s) that generate iodinated disinfection byproducts during drinking water treatment. We present a kinetic investigation of iodination of dimethenamid (DM), a model compound lacking acid-base speciation. Water chemistry parameters (pH, [Cl-], [Br-], [I-], and [pH buffer]) were systematically varied. As pH increased (4-9), DM iodination rate decreased. Conventional wisdom considers hypoiodous acid (HOI) as the predominant iodinating agent; nevertheless, HOI (pK(HOI)/ = 10.4) could not have produced this result, as its concentration is essentially invariant from pH 4-9. In contrast, [H2OI+] and [ICl] both decrease as pH increases. To distinguish their contributions to DM iodination, [Cl-] was added at constant pH and ionic strength. Although chloride addition did increase the iodination rate, the reaction order in [Cl-] was fractional (<= 0.36). The contribution of ICl to DM iodination remained below 47% under typical drinking water conditions ([Cl-] <= 250 mg/L), implicating H2OI+ as the predominant iodinating agent. Distinctions between DM iodination versus chlorination or bromination include a more pronounced role for the hypohalous acidium ion (H2OX+), negligible contributions by hypohalous acid and molecular halogen (X-2), and a more muted influence of XCl, leading to lesser susceptibility to catalysis by chloride.
机译:很少有研究阐明在饮用水处理过程中会产生碘化消毒副产物的药剂。我们目前对碘甲烷(DM)的碘化进行动力学研究,这是一种缺乏酸碱物种的模型化合物。系统改变了水化学参数(pH,[Cl-],[Br-],[I-]和[pH缓冲液])。随着pH值的升高(4-9),DM的碘化率降低。传统观点认为次碘酸(HOI)是主要的碘化剂;但是,HOI(pK(HOI)/ = 10.4)不能产生此结果,因为其浓度在pH 4-9范围内基本不变。相反,[H2OI +]和[IC1]都随pH的升高而降低。为了区分它们对DM碘化的贡献,在恒定的pH和离子强度下添加[Cl-]。尽管添加氯化物确实增加了碘化速率,但是[Cl-]中的反应顺序是分数的(<= 0.36)。在典型的饮用水条件下([Cl-] <= 250 mg / L),ICl对DM碘化的贡献保持在47%以下,暗示H2OI +是主要的碘化剂。 DM碘化与氯化或溴化之间的区别包括次卤酸离子(H2OX +)的作用更为显着,次卤酸和分子卤素(X-2)的贡献可忽略不计,而且XCl的影响更为微弱,从而导致对催化的敏感性降低被氯化物。

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  • 来源
    《Environmental Science & Technology》 |2019年第20期|11764-11773|共10页
  • 作者单位

    Johns Hopkins Univ Dept Environm Hlth & Engn 313 Ames Hall 3400 North Charles St Baltimore MD 21218 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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