街道峡谷中 PM2.5 所含金属的健康风险:对交通废气排放的影响

IF 3.9 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Zhangsen Dong , Minghao Yuan , Yifei Xu , Shanshan Wang , Shenbo Wang
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引用次数: 0

摘要

交通非尾气排放是细微颗粒物(PM2.5)中有毒金属的重要来源,从而对人体健康造成不利影响。在郑州的臭氧和灰霾天气期间,对街道峡谷和城市背景点的 PM2.5 中的金属进行了采样。在街道峡谷观察到的金属浓度高于城市背景点,因为城市背景点受交通废气、石油燃烧和粉尘排放的影响更大。因此,PM2.5 中的金属可能会对街道峡谷的居民造成严重的非致癌和致癌危害。交通废气和石油燃烧分别是造成街道峡谷非致癌和致癌风险的主要因素。此外,交通非废气排放中的 PM2.5 结合金属对健康的严重危害将长期存在于街道峡谷。这项研究揭示了车辆对街道峡谷的健康风险,有利于进一步减少与交通有关的排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Health risks of PM2.5-bound metals at a street canyon: Implication for traffic non-exhaust emissions

Health risks of PM2.5-bound metals at a street canyon: Implication for traffic non-exhaust emissions
Traffic non-exhaust emissions are a significant source of toxic metals in fine particular matter (PM2.5), and thus pose adverse effects on human health. PM2.5-bound metals were sampled at a street canyon and urban background site during ozone and haze periods in Zhengzhou. Higher metal concentrations were observed at the street canyon than at the urban background site, which was more affected by traffic non-exhaust, oil combustion, and dust emissions. Consequently, PM2.5-bound metals may cause significant non-carcinogenic and carcinogenic hazards to residents at the street canyon. Traffic non-exhaust and oil combustion were the primary contributors to the non-carcinogenic and carcinogenic risk at the street canyon, respectively. Furthermore, the severe health risk of PM2.5-bound metals from traffic non-exhaust emissions will remain for a long time at street canyons. This work reveals the health risks from vehicles at street canyons, which is beneficial for further reduction of traffic-related emissions.
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来源期刊
Atmospheric Pollution Research
Atmospheric Pollution Research ENVIRONMENTAL SCIENCES-
CiteScore
8.30
自引率
6.70%
发文量
256
审稿时长
36 days
期刊介绍: Atmospheric Pollution Research (APR) is an international journal designed for the publication of articles on air pollution. Papers should present novel experimental results, theory and modeling of air pollution on local, regional, or global scales. Areas covered are research on inorganic, organic, and persistent organic air pollutants, air quality monitoring, air quality management, atmospheric dispersion and transport, air-surface (soil, water, and vegetation) exchange of pollutants, dry and wet deposition, indoor air quality, exposure assessment, health effects, satellite measurements, natural emissions, atmospheric chemistry, greenhouse gases, and effects on climate change.
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