首页> 外文会议>Water quality technology conference and exposition (2005 WQTC conference proceedings) >Time-Resolved Ozone Demand Reveals that the Initial Phase ofOzonation is an Advanced Oxidation Process
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Time-Resolved Ozone Demand Reveals that the Initial Phase ofOzonation is an Advanced Oxidation Process

机译:时间分辨的臭氧需求表明,臭氧化的初始阶段是高级氧化过程

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Up to now, the initial phase of ozone decomposition has largely been ignored by the scientific community. In drinkingrnwater it is typically called “instantaneous ozone demand” and is considered an inherent inefficiency of ozonation. Inrnthis paper we time-resolve ozone demand by utilizing a continuous quench flow system, which allows measurementsrnstarting 350 milliseconds after ozone addition. It is shown that the initial phase displays very high HO? exposurern(∫HO?dt/∫O3dt ~10-6), indicating that many oxidation processes and therefore product formation during this phase arernHO?-based — I.e. akin to an AOP. It is further shown that the rapid ozone decomposition and very high HO? yieldsrnmay be partly explained by the direct reaction of ozone with amino and phenolic moieties of the NOM. Finally, thernhalogenation (HOCl, HOBr) of amine-containing lake Zurich water minimizes HO? exposure significantly, confirmingrnthat this may represent an important mechanism in the Cl2-NH3 process for minimisation of bromate during ozonationrnof bromide containing waters.
机译:到现在为止,臭氧分解的初始阶段在很大程度上已被科学界所忽略。在饮用水中,通常将其称为“瞬时臭氧需求”,并被认为是固有的臭氧化效率低下。在本文中,我们通过使用连续的急冷系统来及时解决臭氧需求,该系统允许在添加臭氧后的350毫秒内开始测量。结果表明,初始阶段显示出很高的HO?暴露值(∫HO?dt /∫O3dt〜10-6),表明该阶段的许多氧化过程以及因此形成的产物都是基于HOHO-的。类似于AOP。进一步表明,臭氧的快速分解和很高的HO?臭氧可以与NOM的氨基和酚部分直接反应来部分解释产率。最后,含胺的苏黎世湖水的卤化作用(HOCl,HOBr)使HO?最小化。显着暴露,证实这可能是Cl2-NH3过程中一个重要的机制,可在含臭氧的溴化臭氧水中使溴酸盐减至最小。

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