空气质量的变化、挥发性有机化合物形成臭氧的可能性以及德里居民因空气污染而面临的相关健康风险†。

IF 2.8 Q3 ENVIRONMENTAL SCIENCES
Saurabh Sharma, Anjum Singhal, Veluswamy Venkatramanan, Pawan Verma and Mayank Pandey
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引用次数: 0

摘要

本长期研究具有双重目标:首先,监测环境空气质量参数的时空变化;其次,评估空气污染物对德里人口的影响。从中央污染控制委员会门户网站获得了连续环境空气质量监测站收集的五年(2019 年 1 月至 2023 年 12 月)六种主要污染物(PM10、PM2.5、二氧化氮、臭氧、苯和甲苯)的数据。空气污染物对人体健康的影响采用不同的指数和世界卫生组织(WHO)开发的 AirQ+ 模型进行评估。此外,还评估了苯和甲苯的臭氧形成潜能值 (OFP)。研究结果表明,在整个研究期间,所有地点的 PM10 和 PM2.5 浓度都超过了国家和全球准则。值得注意的是,根据国家空气质量指数,工业用地被归为严重类别。在工业场地,与商业场地相比,挥发性有机化合物(VOCs)的 OFP 值更高。健康风险评估中的 AirQ+ 模型分析表明,PM10 暴露与呼吸系统疾病(91.36%)和慢性支气管炎(90.85%)死亡率之间存在密切联系。此外,长期暴露于 PM2.5 与中风(65%)和循环系统疾病(63.83%)的死亡风险增加有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Variability in air quality, ozone formation potential by VOCs, and associated air pollution attributable health risks for Delhi's inhabitants†

Variability in air quality, ozone formation potential by VOCs, and associated air pollution attributable health risks for Delhi's inhabitants†

The present long-term study has been conducted with dual objectives: firstly, to monitor the spatio-temporal variation of ambient air quality parameters and secondly, to evaluate the impact of air pollutants on the Delhi population. Five years (January 2019 to December 2023) of data of six key pollutants (PM10, PM2.5, NO2, O3, Benzene, and Toluene) were collected by continuous ambient air quality monitoring stations, obtained from the Central Pollution Control Board portal. The impact of air pollutants on human health was assessed using different indices and the AirQ+ model developed by the World Health Organization (WHO). Additionally, the ozone formation potential (OFP) of benzene and toluene was evaluated. The findings of the study revealed that the concentrations of PM10 and PM2.5 exceeded both national and global guidelines across all the sites throughout the study period. Notably, industrial sites were classified as the severe category according to the National Air Quality Index. At industrial sites, the OFP of volatile organic compounds (VOCs) was observed to be higher in comparison to commercial sites. The AirQ+ model analysis in the health risk assessment indicated a strong association between PM10 exposure and mortality from respiratory (91.36%) and chronic bronchitis (90.85%) diseases. Additionally, long-term PM2.5 exposure was linked to an increased risk of stroke (65%) and circulatory (63.83%) mortality.

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