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在费城地区使用被动采样法监测气态污染物。

Monitoring gaseous pollutants using passive sampling in the Philadelphia region.

作者信息

Terry Bryan, Shakya Kabindra M

机构信息

Department of Geography and the Environment, Villanova University, Villanova, Pennsylvania, USA.

出版信息

J Air Waste Manag Assoc. 2024 Jan;74(1):52-69. doi: 10.1080/10962247.2023.2279733. Epub 2023 Dec 14.

Abstract

Air pollution can have deleterious impacts on human health and the environment. Historically, air pollution studies have focused more on cities. However, it is also important to consider the impact on large suburban populations living closer to the major cities. In this study, nitrogen oxides (nitrogen dioxide and nitric oxide), sulfur dioxide, ozone, and ammonia concentrations were measured from fifteen sites in the Greater Philadelphia area, Pennsylvania, USA using Ogawa passive samplers from September 2021 to May 2022. The fall season had the highest mean NOx concentrations (11.03 ± 4.51 ppb), and spring had the highest mean O concentration (18.65 ± 6.71 ppb) compared to other seasons. NOx concentrations were higher at suburban (30.43 ± 33.79 ppb) and urban sites (22.49 ± 12.54 ppb) compared to semi-rural sites (11.08 ± 9.20 ppb). SO was not detected in most of the measurements. The positive statistically significant correlation between NO and NH in urban (R = 0.33, p-value <0.05) and suburban sites (R = 0.37, p-value <0.05) during winter and spring, respectively, suggests a high attribution of traffic emissions to NH at urban and suburban sites. Influence of traffic emissions on air pollutant values for the study region is also supported by similar NOx concentrations between suburban and urban sites as well as decreasing NO/NOx ratios with increased distance from expressways. This study shows that passive sampling can be effectively used for assessing spatial and seasonal variations in air pollutants within an area of diverse land use.: This study presents the findings of temporal and seasonal patterns for nitrogen dioxide, nitric oxide, tropospheric ozone, and ammonia at urban, suburban, and semi-rural areas of the greater Philadelphia region. The main objective of the study is to monitor air pollution in suburban and semi-rural areas which are not monitored for air pollution. We monitored from a total of fifteen sites in three seasons to assess air pollution in suburban and semi-rural areas near the major city in the United States - Philadelphia. The findings are important to learn how air quality is affected in suburban and semi-rural areas near the major city. The study also shows the useful application of inexpensive passive sampling technique for measuring air pollution.

摘要

空气污染会对人类健康和环境产生有害影响。从历史上看,空气污染研究更多地集中在城市。然而,考虑对居住在大城市附近的大量郊区人口的影响也很重要。在本研究中,2021年9月至2022年5月期间,使用小川被动采样器在美国宾夕法尼亚州大费城地区的15个地点测量了氮氧化物(二氧化氮和一氧化氮)、二氧化硫、臭氧和氨的浓度。与其他季节相比,秋季的平均氮氧化物浓度最高(11.03±4.51 ppb),春季的平均臭氧浓度最高(18.65±6.71 ppb)。与半农村地区(11.08±9.20 ppb)相比,郊区(30.43±33.79 ppb)和城市地区(22.49±12.54 ppb)的氮氧化物浓度更高。在大多数测量中未检测到二氧化硫。冬季和春季城市(R = 0.33,p值<0.05)和郊区(R = 0.37,p值<0.05)中一氧化氮和氨之间的正统计显著相关性表明,交通排放对城市和郊区的氨有很大贡献。郊区和城市地区之间相似的氮氧化物浓度以及随着与高速公路距离增加而降低的一氧化氮/氮氧化物比率也支持了交通排放对研究区域空气污染物值的影响。这项研究表明,被动采样可有效地用于评估不同土地利用区域内空气污染物的空间和季节变化。:本研究展示了大费城地区城市、郊区和半农村地区二氧化氮、一氧化氮、对流层臭氧和氨的时间和季节模式的研究结果。该研究主要目的是监测未进行空气污染监测的郊区和半农村地区的空气污染。我们在三个季节从总共15个地点进行监测,以评估美国大城市费城附近郊区和半农村地区的空气污染。这些发现对于了解大城市附近郊区和半农村地区的空气质量如何受到影响很重要。该研究还展示了廉价被动采样技术在测量空气污染方面的有用应用。

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