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首页> 外文期刊>Chemosphere >Inactivation of Bacillus subtilis spores during ozonation in water treatment plant: Influence of pre-treatment and consequences for positioning of the ozonation step
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Inactivation of Bacillus subtilis spores during ozonation in water treatment plant: Influence of pre-treatment and consequences for positioning of the ozonation step

机译:污水处理厂臭氧化过程中枯草芽孢杆菌孢子的失活:预处理的影响和臭氧化步骤的定位结果

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摘要

This study reports on quantitative methodology for rational selection of the ozone injection point within unit processes of conventional drinking water treatment plants to improve disinfection efficiencies. The method is based on the fact that a specific inactivation level of microorganisms is achieved at a unique value of ozone exposures, independent of ozone dose and type of water, and quantitatively described by a Delayed Chick-Watson model (CT_(lag): 1.03 mg 1~(-1), k: 1.44 mg~(-1) 1 min~(-1)). This study demonstrated this phenomenon by performing the inactivation of Bacillus subtilis (B. subtilis) spores with ozone in various types of water collected from a series of unit processes in a water treatment plant.rnSimple measurements of the ozone decomposition behavior in waters from each unit process of a water treatment plant can allow the quantitative evaluation of the ozone needed to achieve a required level of inactivation. This methodology will be useful for drinking water treatment plants which intend to improve the disinfection efficiencies of their ozonation process.
机译:这项研究报告了定量方法,用于在常规饮用水处理厂的单位过程中合理选择臭氧注入点,以提高消毒效率。该方法基于以下事实:特定的微生物失活水平是在唯一的臭氧暴露值下实现的,而与臭氧剂量和水的类型无关,并且通过延迟Chick-Watson模型进行定量描述(CT_(lag):1.03) mg 1〜(-1),k:1.44 mg〜(-1)1 min〜(-1))。这项研究通过在从水处理厂的一系列单元过程中收集的各种类型的水中进行的臭氧灭活枯草芽孢杆菌(B.subtilis)孢子的过程中证明了这种现象。简单测量每个单元水中的臭氧分解行为水处理厂的处理过程可以对达到所需灭活水平所需的臭氧进行定量评估。该方法学对打算改善其臭氧化过程的消毒效率的饮用水处理厂很有用。

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