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Multivariate modelling of disinfection kinetics: A comparison among three different disinfectants

机译:消毒动力学的多元模型:三种不同消毒剂的比较

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摘要

Disinfection kinetics has been extensively discussed in scientific literature, however, most of the studies refer to batch reactor experiences and mostly to potable water. Only few authors have compared batch kinetics to continuous flow performances and even fewer are the studies where kinetic models are provided with complete regression statistics. Aim of this study was to apply multivariate regression analysis to model the inactivation kinetics of three different disinfectants: sodium hypochlorite (NaCIO), peracetic acid (PAA) and ozone (O_3). The inactivation of the three disinfectants has been studied on pilot-scale continuous-flow reactors fed with a secondary effluent of a full scale wastewater treatment plant. Escherichia coli, total and faecal coliforms were used as microbial indicators. The accuracy of the most commonly used inactivation models (i.e. Chick-Watson, Selleck, and Horn) was tested and compared. The goodness of fit of each model was evaluated and the inactivation parameters were determined for each disinfectant-indicator combination. The best-fit models for NaCIO and O_3 inactivation kinetics were based on Horn's formula whereas PAA inactivation was found to be better modeled by the more recently described "S-model". Regression analysis outlined the dominance of disinfectant dosage over contact time for NaCIO and PAA and the lack of such a dominance for O_3. Furthermore, whereas the inactivation kinetics of the three microbial indicators resulted to be comparable for NaCIO and O_3, a faster inactivation was shown for Escherichia coli with PAA suggesting a inactivation mechanism different from total and faecal coliforms. This result is extremely relevant since Italy in 2000 replaced Escherichia coli to total and faecal coliforms as microbial indicator to assess the water quality requirements of surface waters and reused wastewaters and PAA is increasingly preferred as disinfectant agent to hypochlorite and ozone.
机译:消毒动力学已在科学文献中进行了广泛讨论,但是,大多数研究涉及间歇式反应器的使用经验,而大多数涉及饮用水。只有极少数的作者将批处理动力学与连续流动性能进行了比较,只有动力学模型具有完整回归统计量的研究较少。这项研究的目的是应用多元回归分析来建模三种不同消毒剂的灭活动力学:次氯酸钠(NaCIO),过乙酸(PAA)和臭氧(O_3)。三种消毒剂的灭活作用已在中规模连续流反应器中进行了研究,该反应器中装有全尺寸废水处理厂的二次废水。大肠杆菌,总和粪便大肠菌群用作微生物指标。测试并比较了最常用的灭活模型(即Chick-Watson,Selleck和Horn)的准确性。评估每个模型的拟合优度,并确定每种消毒剂-指示剂组合的失活参数。 NaCIO和O_3失活动力学的最佳拟合模型基于Horn公式,而PAA失活被最近描述的“ S模型”更好地建模。回归分析概述了消毒剂剂量在NaCIO和PAA接触时间内占主导地位,而O_3则没有这种优势。此外,尽管三种微生物指示剂的灭活动力学与NaCIO和O_3相当,但对大肠杆菌和PAA的灭活速度更快,表明其灭活机制不同于总的和粪便大肠菌。自从2000年意大利用大肠杆菌代替总大肠杆菌和粪便大肠菌群作为评估地表水和再利用废水的水质要求的微生物指标以来,PAA作为次氯酸盐和臭氧的消毒剂越来越受到青睐,因此这一结果极为相关。

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  • 来源
    《Desalination and water treatment》 |2011年第3期|p.128-139|共12页
  • 作者单位

    Politecnico di Milano, (University of Technology) Environmental, Hydraulic, Infrastructures and Surveying Engineering (DIIAR) Department, Environmental Section, Piazza Leonardo da Vinci, 32 20133 Milano, Italy;

    Politecnico di Milano, (University of Technology) Environmental, Hydraulic, Infrastructures and Surveying Engineering (DIIAR) Department, Environmental Section, Piazza Leonardo da Vinci, 32 20133 Milano, Italy;

    Politecnico di Milano, (University of Technology) Environmental, Hydraulic, Infrastructures and Surveying Engineering (DIIAR) Department, Environmental Section, Piazza Leonardo da Vinci, 32 20133 Milano, Italy;

    Politecnico di Milano, (University of Technology) Environmental, Hydraulic, Infrastructures and Surveying Engineering (DIIAR) Department, Environmental Section, Piazza Leonardo da Vinci, 32 20133 Milano, Italy;

    Politecnico di Milano, (University of Technology) Environmental, Hydraulic, Infrastructures and Surveying Engineering (DIIAR) Department, Environmental Section, Piazza Leonardo da Vinci, 32 20133 Milano, Italy;

    Politecnico di Milano, (University of Technology) Environmental, Hydraulic, Infrastructures and Surveying Engineering (DIIAR) Department, Environmental Section, Piazza Leonardo da Vinci, 32 20133 Milano, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    disinfection kinetics; ozone; peracetic acid; sodium hypochlorite; multivariate analysis;

    机译:消毒动力学;臭氧;过乙酸次氯酸钠;多元分析;

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