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首页> 外文期刊>Environmental Pollution >Pre-ozonation of surface water: An effective water treatment process to reduce the risk of infection by Giardia in drinking water
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Pre-ozonation of surface water: An effective water treatment process to reduce the risk of infection by Giardia in drinking water

机译:地表水预臭氧组织:一种有效的水处理过程,以降低饮用水中的贾第聂感染风险

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摘要

Giardia is a protozoan parasite of primary concern for the drinking water industry. High contact times are required for Giardia inactivation by chlorination, while ozonation may be effective at much lower Ct products. In this study, we have assessed the occurrence of Giardia cysts in raw water, and in chlorinated or ozonated water from a drinking water treatment plant (DWTP) in Brazil, over a 16-month period. Moreover, we analyzed the effects of primary disinfection on cysts, and calculated the infection risk caused by the occurrence of Giardia cysts in raw water, chlorinated or ozonated water. Furthermore, we assessed the correlation of Giardia cysts with indicator bacteria in raw water. Data referring to concentration of Giardia cysts in raw water showed adherence to a gamma distribution at a significance level alpha = 0.05. The detection frequency and the mean concentration of Giardia cysts were higher in raw water (86.6%, 26 cysts.L-1), than in chlorinated (46.1%, 15.7 cysts.L-1) or ozonated water (43.5%, 11.1 cysts.L-1). Overall, Giardia non-viable cysts were detected more frequently in ozonated water (80%) than in chlorinated water (68.2%) or raw water (37.7%). Ozonation and chlorination resulted, respectively, in approximate to 27.5- and approximate to 13- fold reduction of Giardia infection risk, when compared to the risk calculated for raw water. Total coliform and Escherichia coli proved to be suitable surrogates to predict the occurrence of Giardia cysts in raw surface water, however, the indicator bacteria may not be suitable surrogates to predict the disinfection of Giardia cysts, as no correlation was found between indicator bacteria and Giardia cysts in treated water. To our knowledge, this is the first study reporting the efficacy of chlorine and ozone at Ct products actually applied at a full-scale drinking water treatment plant against Giardia cysts naturally occurring in the source water, i.e. real situation. Ozonation has proven more efficient than chlorination against Giardia cysts in surface water. Escherichia coli proved to be suitable surrogate to predict Giardia cysts in raw surface water. (C) 2020 Elsevier Ltd. All rights reserved.
机译:Giardia是饮用水行业主要关注的原始寄生虫。通过氯化糖尿病灭活需要高接触时间,但臭氧化可能在低得多的CT产品中有效。在这项研究中,我们评估了在16个月内从巴西的饮用水处理厂(DWTP)中的草原或氯化或氟化水中的发生。此外,我们分析了初级消毒对囊肿的影响,并计算了原水,氯化或臭氧化水中的贾迪亚囊肿发生的感染风险。此外,我们评估了Giardia囊肿与原水中指示物细菌的相关性。参考原水中的Giardia囊肿浓度的数据显示出在显着性水平α= 0.05的γ分布中的粘附。原水(86.6%,26个囊肿,1)中的检测频率和Giardia囊肿的平均浓度高于氯化(46.1%,15.7个囊肿,1)或臭氧水(43.5%,11.1囊肿) .l-1)。总体而言,在臭氧水(80%)中比氯化水(68.2%)或原水(37.7%)更频繁地检测Giardia不可活性囊肿。与对原水计算的风险相比,臭氧化和氯化分别达到27.5-且近似降低13倍,差约13倍。总大肠杆菌和大肠杆菌被证明是合适的替代物,以预测原始地表水中的贾迪亚囊肿的发生,然而,指标细菌可能不是合适的替代物,以预测Giardia囊肿的消毒,因为指示剂细菌和贾尼亚迪亚之间没有相关的相关性处理过的水中的囊肿。据我们所知,这是第一项研究报告氯和臭氧在CT产品中的疗效实际应用于在源水中天然存在的Giardia囊肿,即实际情况。臭氧化合物在地表水中的氯化比紫外线囊肿更有效。 Escherichia Coli被证明是适用于预测原始地表水中的Giardia囊肿。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2020年第3期|115144.1-115144.7|共7页
  • 作者单位

    Univ Estadual Campinas Sch Civil Engn Architecture & Urban Design Dept Infrastruct & Environm Ave Albert Einstein 951 BR-13083852 Campinas SP Brazil;

    Univ Estadual Campinas Sch Civil Engn Architecture & Urban Design Dept Infrastruct & Environm Ave Albert Einstein 951 BR-13083852 Campinas SP Brazil;

    Univ Estadual Campinas Sch Civil Engn Architecture & Urban Design Dept Infrastruct & Environm Ave Albert Einstein 951 BR-13083852 Campinas SP Brazil;

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

    Chlorination; Conventional drinking water treatment; Escherichia coli; Ozone; Total coliform;

    机译:氯化;常规饮用水处理;大肠杆菌;臭氧;总大山;

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