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Comparison of Predicted Microbiological Human Health Risks Associated with de Facto, Indirect, and Direct Potable Water Reuse

机译:与事实,间接和直接饮用水回用相关的预测的微生物人类健康风险比较

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摘要

Increasing interest in recycling water for potable purposes makes understanding the risks associated with potential acute microbial hazards important. We compared risks from de facto reuse, indirect potable reuse (IPR), and direct potable reuse (DPR) scenarios using a previously published quantitative microbial risk assessment methodology and literature review results. The de facto reuse simulation results are compared to a Cryptosporidium spp. database collected for the Long Term 2 Enhanced Surface Water Treatment Rule's information collection rule (ICR) and to a literature review of norovirus (NoV) densities in ambient surface waters. The de facto simulation results with a treated wastewater effluent contribution of 1% in surface waters and a residence time of 30 days most closely match the ICR dataset. The de facto simulations also suggest that using NoV monitoring data from surface waters may overestimate microbial risks, compared to NoV data from raw sewage coupled with wastewater treatment reduction estimates. The predicted risks from IPR and DPR are consistently lower than those for the de facto reuse scenarios assuming the AWTFs are operating within design specifications. These analyses provide insight into the microbial risks associated with various potable reuse scenarios and highlight the need to carefully consider drinking water treatment choices when wastewater effluent is a component of any drinking water supply.
机译:对用于饮用水的循环水的兴趣日益浓厚,因此了解与潜在的急性微生物危害相关的风险非常重要。我们使用先前发布的定量微生物风险评估方法和文献综述结果,比较了事实上的重复利用,间接的可重复使用(IPR)和直接的可重复使用(DPR)方案带来的风险。将实际的重用模拟结果与隐孢子虫属进行比较。长期2增强地表水处理规则的信息收集规则(ICR)收集的数据库,以及周围地表水中诺如病毒(NoV)密度的文献综述。事实上的模拟结果表明,经过处理的废水在地表水中的贡献为1%,停留时间为30天,与ICR数据集最为匹配。事实模拟还表明,与来自原污水的NoV数据和废水处理量减少的估算值相比,使用地表水的NoV监测数据可能会高估微生物风险。假设AWTF在设计规范内运行,则IPR和DPR的预计风险始终低于实际重用方案的风险。这些分析提供了与各种饮用水回用方案相关的微生物风险的见解,并强调了当废水流出物是任何饮用水供应的组成部分时,需要仔细考虑饮用水处理选择的需求。

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  • 来源
    《Environmental Science & Technology》 |2019年第22期|13382-13389|共8页
  • 作者单位

    Soller Environm LLC 3022 King St Berkeley CA 94703 USA;

    ICF LLC 9300 Lee Highway Fairfax VA 22031 USA;

    US EPA Off Water Off Sci & Technol 1200 Penn Ave NW Washington DC 20460 USA;

  • 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
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