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Evaluating Multipollutant Exposure and Urban Air Quality: Pollutant Interrelationships Neighborhood Variability and Nitrogen Dioxide as a Proxy Pollutant

机译:评估多种污染物的暴露量和城市空气质量:污染物之间的相互关系邻域变异性和作为替代污染物的二氧化氮

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摘要

Background: Although urban air pollution is a complex mix containing multiple constituents, studies of the health effects of long-term exposure often focus on a single pollutant as a proxy for the entire mixture. A better understanding of the component pollutant concentrations and interrelationships would be useful in epidemiological studies that exploit spatial differences in exposure by clarifying the extent to which measures of individual pollutants, particularly nitrogen dioxide (NO2), represent spatial patterns in the multipollutant mixture.Objectives: We examined air pollutant concentrations and interrelationships at the intraurban scale to obtain insight into the nature of the urban mixture of air pollutants.Methods: Mobile measurements of 23 air pollutants were taken systematically at high resolution in Montreal, Quebec, Canada, over 34 days in the winter, summer, and autumn of 2009.Results: We observed variability in pollution levels and in the statistical correlations between different pollutants according to season and neighborhood. Nitrogen oxide species (nitric oxide, NO2, nitrogen oxides, and total oxidized nitrogen species) had the highest overall spatial correlations with the suite of pollutants measured. Ultrafine particles and hydrocarbon-like organic aerosol concentration, a derived measure used as a specific indicator of traffic particles, also had very high correlations.Conclusions: Our findings indicate that the multipollutant mix varies considerably throughout the city, both in time and in space, and thus, no single pollutant would be a perfect proxy measure for the entire mix under all circumstances. However, based on overall average spatial correlations with the suite of pollutants measured, nitrogen oxide species appeared to be the best available indicators of spatial variation in exposure to the outdoor urban air pollutant mixture.Citation: Levy I, Mihele C, Lu G, Narayan J, Brook JR. 2014. Evaluating multipollutant exposure and urban air quality: pollutant interrelationships, neighborhood variability, and nitrogen dioxide as a proxy pollutant. Environ Health Perspect 122:65–72; 
机译:背景:尽管城市空气污染是一种包含多种成分的复杂混合物,但长期暴露对健康的影响研究通常集中于单一污染物作为整个混合物的替代物。更好地了解污染物的成分浓度和相互关系将有助于流行病学研究,该研究通过阐明单个污染物(特别是二氧化氮(NO2))的度量在多污染物混合物中代表空间格局的程度来利用暴露的空间差异。我们研究了城市内部尺度上的空气污染物浓度和相互关系,以了解城市空气污染物混合物的性质。方法:在加拿大魁北克省蒙特利尔市进行的34天的高分辨率系统化移动测量了23种空气污染物结果:我们观察了污染水平的变化以及不同污染物之间的季节和邻域之间的统计相关性。氮氧化物种类(一氧化氮,NO2,氮氧化物和总氧化氮种类)与所测量的污染物组具有最高的总体空间相关性。超细颗粒和类似碳氢化合物的有机气溶胶浓度(用作交通颗粒的特定指标)也具有很高的相关性。结论:我们的发现表明,多种污染物的混合在整个城市的时间和空间上都存在很大差异,因此,在任何情况下,任何一种污染物都不能成为整个混合物的理想替代指标。但是,基于与所测污染物系列的总体平均空间相关性,氮氧化物种类似乎是暴露于室外城市空气污染物混合物中空间变化的最佳可用指标。引用:Levy I,Mihele C,Lu G,Narayan J,布鲁克JR。 2014年。《评估多污染物暴露和城市空气质量:污染物的相互关系,邻里变化和以二氧化氮作为替代污染物。环境健康展望122:65–72;

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