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Valuing the subsurface pathogen treatment barrier in water recycling via aquifers for drinking supplies

机译:重视通过饮用水供应层进行水循环利用的地下病原体处理障碍

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摘要

A quantitative microbial risk assessment (QMRA) was performed at four managed aquifer recharge (MAR) sites (Australia, South Africa, Belgium, Mexico) where reclaimed waste-water and stormwater is recycled via aquifers for drinking water supplies, using the same risk-based approach that is used for public water supplies. For each of the sites, the aquifer treatment barrier was assessed for its log_(10) removal capacity much like for other water treatment technologies. This information was then integrated into a broader risk assessment to determine the human health burden from the four MAR sites. For the Australian and South African cases, managing the aquifer treatment barrier was found to be critical for the schemes to have low risk. For the Belgian case study, the large treatment trains both in terms of pre- and post-aquifer recharge ensures that the risk is always low. In the Mexico case study, the risk was high due to the lack of pre-treatment and the low residence times of the recharge water in the aquifer. A further sensitivity analysis demonstrated that human health risk can be managed if aquifers are integrated into a treatment train to attenuate pathogens. However, reduction in human health disease burden (as measured in disability adjusted life years, DALYs) varied depending upon the number of pathogens in the recharge source water. The beta-Poisson dose response curve used for translating rotavirus and Cryptosporidium numbers into DALYs coupled with their slow environmental decay rates means poor quality injectant leads to aquifers having reduced value to reduce DALYs. For these systems, like the Mexican case study, longer residence times are required to meet their DALYs guideline for drinking water. Nevertheless the results showed that the risks from pathogens can still be reduced and recharging via an aquifer is safer than discharging directly into surface water bodies.
机译:在四个受管理的含水层补给(MAR)地点(澳大利亚,南非,比利时,墨西哥)进行了定量微生物风险评估(QMRA),在这些地点,再生水和雨水通过含水层循环用于饮用水供应,使用的风险相同。基于基础的方法,用于公共供水。对于每个位置,都像其他水处理技术一样,评估了含水层处理屏障的log_(10)去除能力。然后将这些信息整合到更广泛的风险评估中,以确定四个MAR站点对人类健康的负担。对于澳大利亚和南非的案例,发现管理含水层的障碍对于降低风险的计划至关重要。对于比利时的案例研究而言,无论是在含水层补给之前还是之后,大型处理方案都可以确保风险始终较低。在墨西哥的案例研究中,由于缺乏预处理且补给水在含水层中的停留时间短,因此风险很高。进一步的敏感性分析表明,如果将含水层整合到减毒病原体的处理程序中,就可以管理人类健康风险。但是,人类健康疾病负担的减少(以残疾调整生命年(DALYs)衡量)取决于补给源水中病原体的数量。用于将轮状病毒和隐孢子虫数量转化为DALY的β-泊松剂量反应曲线,加上其缓慢的环境衰减速率,意味着劣质的注入剂导致含水层的降低值降低了DALY。对于这些系统,例如墨西哥的案例研究,需要更长的停留时间才能达到其DALYs饮用水准则。然而,结果表明,仍然可以降低病原体的风险,通过含水层补给水比直接排放到地表水体中更安全。

著录项

  • 来源
    《Water Research》 |2010年第6期|1841-1852|共12页
  • 作者单位

    CSIRO Water for a Healthy Country, Private Bag No. 2, Glen Osmond, SA 5064, Australia CSIRO Water for a Healthy Country, Queensland Bioscience Precinct, 306 Carmody Road, St Lucia, Brisbane, QLD 4067, Australia;

    CSIRO Water for a Healthy Country, Private Bag No. 2, Glen Osmond, SA 5064, Australia CSIRO Water for a Healthy Country, Queensland Bioscience Precinct, 306 Carmody Road, St Lucia, Brisbane, QLD 4067, Australia;

    CSIRO Water for a Healthy Country, Queensland Bioscience Precinct, 306 Carmody Road, St Lucia, Brisbane, QLD 4067, Australia Water for a Healthy Country National Research Flagship, Canberra, Australia;

    Aquafin NV, Dijfestraat 8, B-2630 Aartselaar, Belgium European Commission, 170 Rue de la Loi/Wetstraat, 1040 Brussels, Belgium;

    CSIR - Council for Scientific and Industrial Research, P.O. Box 320, Stellenbosch 7599, South Africa;

    UNAM - Uniuersidad Nacional Autdnoma de Mexico, Instituto de Ingeneria, Circuito Escolar, Ciudad Uniuersitaria, 04510 Mexico, D.F., Mexico;

    Fachhochschule Nordiuestschiueiz, Hochschule/ur Life Sciences, Institut/ur Ecopreneurship, Grundenstrasse 40, CH-4132 Muttenz, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    managed aquifer recharge; aquifer treatment; QMRA; water recycling;

    机译:管理含水层补给;含水层处理;QMRA;水回收;
  • 入库时间 2022-08-17 13:49:38

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