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首页> 外文期刊>Journal of the Air & Waste Management Association >Evaluation of air quality zone classification methods based on ambient air concentration exposure
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Evaluation of air quality zone classification methods based on ambient air concentration exposure

机译:基于环境空气浓度暴露的空气质量区域分类方法的评估

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摘要

Air quality zones are used by regulatory authorities to implement ambient air standards in order to protect human health. Air quality measurements at discrete air monitoring stations are critical tools to determine whether an air quality zone complies with local air quality standards or is noncompliant. This study presents a novel approach for evaluation of air quality zone classification methods by breaking the concentration distribution of a pollutant measured at an air monitoring station into compliance and exceedance probability density functions (PDFs) and then using Monte Carlo analysis with the Central Limit Theorem to estimate long-term exposure. The purpose of this paper is to compare the risk associated with selecting one ambient air classification approach over another by testing the possible exposure an individual living within a zone may face. The chronic daily intake (CDI) is utilized to compare different pollutant exposures over the classification duration of 3 years between two classification methods. Historical data collected from air monitoring stations in Kuwait are used to build representative models of 1-hr NO_2 and 8-hr O_3 within a zone that meets the compliance requirements of each method. The first method, the “3 Strike” method, is a conservative approach based on a winner-take-all approach common with most compliance classification methods, while the second, the 99% Rule method, allows for more robust analyses and incorporates long-term trends. A Monte Carlo analysis is used to model the CDI for each pollutant and each method with the zone at a single station and with multiple stations. The model assumes that the zone is already in compliance with air quality standards over the 3 years under the different classification methodologies. The model shows that while the CDI of the two methods differs by 2.7% over the exposure period for the single station case, the large number of samples taken over the duration period impacts the sensitivity of the statistical tests, causing the null hypothesis to fail. Local air quality managers can use either methodology to classify the compliance of an air zone, but must accept that the 99% Rule method may cause exposures that are statistically more significant than the 3 Strike method. Implications: A novel method using the Central Limit Theorem and Monte Carlo analysis is used to directly compare different air standard compliance classification methods by estimating the chronic daily intake of pollutants. This method allows air quality managers to rapidly see how individual classification methods may impact individual population groups, as well as to evaluate different pollutants based on dosage and exposure when complete health impacts are not known.
机译:监管机构使用空气质量区来实施环境空气标准,以保护人类健康。离散空气监测站的空气质量测量是确定空气质量区是否符合当地空气质量标准或不符合标准的关键工具。这项研究提出了一种评估空气质量区域分类方法的新方法,该方法通过将在空气监测站测量的污染物的浓度分布分解为顺应性和超标概率密度函数(PDF),然后将蒙特卡洛分析与中央极限定理结合使用估计长期接触。本文的目的是通过测试居住在一个区域内的个人可能面临的暴露,比较选择一种环境空气分类方法与另一种环境空气分类方法相关的风险。慢性日摄入量(CDI)用于比较两种分类方法在3年的分类持续时间内不同的污染物暴露。从科威特的空气监测站收集的历史数据用于建立满足每种方法合规性要求的区域内1小时NO_2和8小时O_3的代表性模型。第一种方法是“三击”方法,是一种保守的方法,基于大多数合规性分类方法中常见的“赢家通吃”方法,而第二种方法是“ 99%规则”方法,它可以进行更鲁棒的分析,并结合了学期趋势。使用蒙特卡洛分析法对每种污染物和每种方法的CDI进行建模,以单个站点和多个站点的区域为例。该模型假定,在不同的分类方法下,该区域在过去三年中已经符合空气质量标准。该模型显示,尽管两种方法的CDI在单站情况下的暴露时间段内相差2.7%,但在此期间内采集的大量样本会影响统计检验的敏感性,从而导致无效假设失败。当地的空气质量管理者可以使用这两种方法对空气区域的合规性进行分类,但必须接受99%规则方法可能会导致统计学上比三罢工方法更为重要的暴露。启示:使用中央极限定理和蒙特卡洛分析的一种新方法,通过估算污染物的长期每日摄入量,直接比较不同的空气标准达标分类方法。通过这种方法,空气质量管理人员可以快速了解个体分类方法如何影响个体人群,并在未知全面健康影响的情况下,根据剂量和暴露量评估不同的污染物。

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