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Quantitative risk assessment of Cryptosporidium in tap water in Ireland

机译:爱尔兰自来水中隐孢子虫的定量风险评估

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摘要

Cryptosporidium species are protozoan parasites associated with gastro-intestinal illness. Following a number of high profile outbreaks worldwide, it has emerged as a parasite of major public health concern. A quantitative Monte Carlo simulation model was developed to evaluate the annual risk of infection from Cryptosporidium in tap water in Ireland. The assessment considers the potential initial contamination levels in raw water, oocyst removal and decontamination events following various process stages, including coagulation/flocculation, sedimentation, filtration and disinfection. A number of scenarios were analysed to represent potential risks from public water supplies, group water schemes and private wells. Where surface water is used additional physical and chemical water treatment is important in terms of reducing the risk to consumers. The simulated annual risk of illness for immunocompetent individuals was below 1 ×10~(-4) per year (as set by the US EPA) except under extreme contamination events. The risk for immunocompromised individuals was 2-3 orders of magnitude greater for the scenarios analysed. The model indicates a reduced risk of infection from tap water that has undergone microfiltration, as this treatment is more robust in the event of high contamination loads. The sensitivity analysis highlighted the importance of watershed protection and the importance of adequate coagulation/flocculation in conventional treatment The frequency of failure of the treatment process is the most important parameter influencing human risk in conventional treatment. The model developed in this study may be useful for local authorities, government agencies and other stakeholders to evaluate the likely risk of infection given some basic input data on source water and treatment processes used.
机译:隐孢子虫是与胃肠道疾病相关的原生动物寄生虫。在世界范围内爆发了许多引人注目的疾病之后,它已成为主要公共卫生问题的寄生虫。建立了定量的蒙特卡洛模拟模型,以评估爱尔兰自来水中每年由隐孢子虫感染的风险。该评估考虑了在各个工艺阶段(包括凝结/絮凝,沉淀,过滤和消毒)之后原水中潜在的初始污染水平,卵囊的去除和去污事件。分析了许多方案,以代表来自公共供水,团体供水计划和私人水井的潜在风险。在使用地表水的地方,额外的物理和化学水处理对降低消费者风险很重要。免疫能力强的个体的模拟年度疾病风险每年(根据美国EPA设定)低于1×10〜(-4)(极端污染事件除外)。在所分析的情况下,免疫受损的个体的风险要高2-3个数量级。该模型表明,经过微滤的自来水感染的风险降低,因为在高污染负荷的情况下,这种处理更加有效。敏感性分析强调了常规治疗中分水岭保护的重要性和充分凝结/絮凝的重要性。在常规治疗中,治疗过程失败的频率是影响人类风险的最重要参数。在给定有关水源和所用处理过程的一些基本输入数据的情况下,本研究开发的模型可能对地方当局,政府机构和其他利益相关者评估可能的感染风险有用。

著录项

  • 来源
    《Science of the total environment》 |2010年第4期|740-753|共14页
  • 作者单位

    UCD School of Agriculture, Food Science and Veterinary Medicine, College of life Sciences, Agriculture and Food Science Centre, Belfield, Dublin 4, Ireland;

    UCD School of Agriculture, Food Science and Veterinary Medicine, College of life Sciences, Agriculture and Food Science Centre, Belfield, Dublin 4, Ireland;

    Department of Bacteriology, National University of Ireland, Galway, Ireland;

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

    cryptosporidium; risk assessment; water;

    机译:隐孢子虫风险评估;水;

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