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Observations on the analysis of time-dependent health risks from groundwater contamination and the utility of RRV and NCP as measures.

机译:对地下水污染随时间变化的健康风险进行分析的观察结果,以及使用RRV和NCP作为措施的观察结果。

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摘要

Estimation of health risks from exposure to contaminated groundwater traditionally focuses on the maximum risk. As such, the traditional approach does not provide insight into the time evolution of risk. Here, a continuous time-dependent method is developed and explored that allows estimation of chronic, carcinogenic risk as a function of when exposure to contaminated groundwater starts, thus producing a distribution of risk through time capable of capturing fundamentally different information than maximum risk. In addition to direct consideration of the time-dependent risks, measures for quantifying temporal variation in risk are explored: reliability, resilience, vulnerability, (RRV) and non-compliance projections (NCPs). The RRV measures serve to estimate the probability of an acceptable health risk, probability of system recovery, expected maximum health risk, and average exceedance of a prescribed health risk threshold. NCPs provide for visualization of unacceptable health risk as a function of time and population characteristics.;The time-dependent chronic risk and accompanying measures are investigated in two systems: (1) two synthetic breakthrough curves of equal total mass but varying temporal distribution in concentration observed at the well and (2) a case study with uncertainty in hydraulic conductivity and variability in population characteristics. The results obtained for the synthetic curves demonstrate that episodic contamination events produce fundamentally different time-dependent risks than long-term events, even when both curves contain equal total mass arriving at the well: these differences are apparent in the risk versus time curve and can be captured via the RRV and NCP measures. The results from the case study highlight that assessment of time-dependent risks provides rich insight into the structure of the risk in time, space, and as a function of population variability. Overall, the results of this study demonstrate that further study of time-dependent risk from groundwater contamination, including application under different management scenarios, is well justified and promises to fundamentally enhance our ability to assess risk from a contaminated water supply. In particular, this work demonstrates that consideration of time-dependent risk provides a substantially broader set of tools for assessing potential chronic health risk from groundwater contamination than is available from the classic, maximum risk methodology.
机译:传统上,估算受污染的地下水所致健康风险的重点是最大风险。因此,传统方法无法洞悉风险的时间演变。在这里,开发并探索了一种与时间有关的连续方法,该方法允许根据暴露于受污染地下水的时间开始估算慢性致癌风险,从而产生随时间变化的风险分布,能够捕获与最大风险根本不同的信息。除了直接考虑与时间有关的风险外,还探讨了量化风险随时间变化的措施:可靠性,适应性,脆弱性(RRV)和违规预测(NCP)。 RRV度量用于估计可接受的健康风险,系统恢复的可能性,预期的最大健康风险以及平均超过规定的健康风险阈值的可能性。 NCP可以将不可接受的健康风险作为时间和人口特征的函数进行可视化。在两个系统中研究时间相关的慢性风险和相应的措施:(1)两条总质量相等但浓度随时间变化的合成突破曲线(2)在水力传导率不确定和种群特征变化的情况下进行的案例研究。从合成曲线获得的结果表明,偶发性污染事件与长期事件相比,与长期事件相比,产生了根本不同的时间依赖性风险,即使两条曲线包含到达井的总质量相等:这些差异在风险-时间曲线中也很明显,并且可以通过RRV和NCP措施捕获。案例研究的结果表明,对与时间有关的风险进行评估,可以使人们对风险的时间,空间和人口变异性的结构有更深入的了解。总体而言,这项研究的结果表明,对地下水污染随时间变化的风险进行进一步研究(包括在不同管理方案下的应用)是合理的,并有望从根本上提高我们评估受污染水源风险的能力。特别是,这项工作表明,与时间有关的风险的考虑比传统的最大风险方法为评估地下水污染带来的潜在慢性健康风险提供了更为广泛的工具。

著录项

  • 作者

    Rodak, Carolyn M.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Engineering Environmental.;Water Resource Management.;Hydrology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 266 p.
  • 总页数 266
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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