基于风险的多污染物空气质量评估与管理框架。

H Christopher Frey, Bryan Hubbell
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引用次数: 0

摘要

国家研究委员会建议采用基于风险和绩效的多污染物方法来管理空气质量。具体来说,管理决策应以尽量减少多种空气污染源的暴露和不利影响的风险为基础,这些决策的成功应以它们实现这一目标的程度来衡量。我们简要描述风险分析及其在当前空气质量管理方法中的应用。就如何改进现有做法以支持完全基于风险和绩效的多污染物空气质量管理系统提出了建议。以可信和与政策相关的方式实施风险评估框架的能力取决于能否获得科学合理的组成模型和数据,并了解其在综合评估中的应用。用于评价使用此类框架作出的决定的结果的问责评估也是如此。现有的风险分析框架虽然通常适用于个别污染物,但在概念上很适合于分析多污染物管理行动。该框架的许多要素,如排放和空气质量模型,已经存在,具有多污染物特征。然而,该框架需要得到来自多种污染物健康研究的暴露和浓度反应关系的信息的支持。由于将管理行动与减少排放、改善空气质量、减少接触和健康结果联系起来的因果链在前瞻性风险分析和回顾性问责制评估之间是平行的,因此这两种类型的评估应在可能的情况下置于具有共同衡量标准和指标的单一框架内。在现有的空气质素管理系统内采用多污染物风险分析架构,例如侧重于个别污染物的标准,并为空气有毒物质和环境污染物设定单独的目标,可在减少风险方面取得改善。但是,如果目标和行动是根据各种标准污染物和空气毒物(有害空气污染物)之间具有可比性的风险指标来确定的,并且包括人类健康和生态风险,则可能会有进一步的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Risk-based Assessment And Management Framework For Multipollutant Air Quality.

The National Research Council recommended both a risk- and performance-based multipollutant approach to air quality management. Specifically, management decisions should be based on minimizing the exposure to, and risk of adverse effects from, multiple sources of air pollution and that the success of these decisions should be measured by how well they achieved this objective. We briefly describe risk analysis and its application within the current approach to air quality management. Recommendations are made as to how current practice could evolve to support a fully risk- and performance-based multipollutant air quality management system. The ability to implement a risk assessment framework in a credible and policy-relevant manner depends on the availability of component models and data which are scientifically sound and developed with an understanding of their application in integrated assessments. The same can be said about accountability assessments used to evaluate the outcomes of decisions made using such frameworks. The existing risk analysis framework, although typically applied to individual pollutants, is conceptually well suited for analyzing multipollutant management actions. Many elements of this framework, such as emissions and air quality modeling, already exist with multipollutant characteristics. However, the framework needs to be supported with information on exposure and concentration response relationships that result from multipollutant health studies. Because the causal chain that links management actions to emission reductions, air quality improvements, exposure reductions and health outcomes is parallel between prospective risk analyses and retrospective accountability assessments, both types of assessment should be placed within a single framework with common metrics and indicators where possible. Improvements in risk reductions can be obtained by adopting a multipollutant risk analysis framework within the current air quality management system, e.g. focused on standards for individual pollutants and with separate goals for air toxics and ambient pollutants. However, additional improvements may be possible if goals and actions are defined in terms of risk metrics that are comparable across criteria pollutants and air toxics (hazardous air pollutants), and that encompass both human health and ecological risks.

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