Insights into the source characterization, risk assessment and ozone formation sensitivity of ambient VOCs at an urban site in the Fenwei Plain, China

IF 11.3 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Journal of Hazardous Materials Pub Date : 2025-02-15 Epub Date: 2024-11-29 DOI:10.1016/j.jhazmat.2024.136721
Huan Zhang , Chen Zhang , Shasha Liu , Shijie Yin , Siqing Zhang , Hongji Zhu , Fengyu Yan , Hua Yang , Xiaoning Ru , Xingang Liu
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Abstract

The ground-level O3 concentration has shown a deteriorating trend in the Fenwei Plain of China, which poses a greater challenge for formulating control strategies of O3 precursor (VOCs). To accurately control VOCs sources and effectively reduce O3 concentration from a seasonal perspective, online monitoring of 114 VOCs was conducted at Yuncheng Middle School Station from January 1, 2021 to December 31, 2021. The VOCs concentration showed a seasonal variation with the highest in winter and the lowest in summer. During the four seasons, alkanes (34.5–41.7 %) and OVOCs (36.6–46.9 %) were the most abundant species. The emission ratios of specific VOCs species indicated that vehicular exhaust, industrial source, and combustion were the major VOCs sources. The Positive Matrix Factorization (PMF) model identified that industrial source and secondary conversion were the main contributors in summer, while combustion and LPG/NG contributed more significantly in winter. The 2021-based VOCs emission inventory showed that the total VOCs emissions in the central urban area of Yuncheng was 8128.8 t, in which industrial process was the largest contributor. Alkanes, aromatics, and OVOCs accounted for 31.0 %, 25.8 %, and 25.7 % of the annual VOCs emission, respectively. In addition, the calculated relative incremental reactivity (RIR) values of O3 precursors demonstrated that alkenes and aromatics were the most sensitive groups to O3 formation during the four seasons. The ambient VOCs posed the non-carcinogenic risk across all seasons, which can be attributed to acrolein and three main sources (industrial source, secondary conversion, and combustion). However, ambient VOCs exposed to definite carcinogenic risks due to the appearance of 1,2-dichloroethane, 1,2-dichloropropane, and benzene, and the main risks arose from industrial source, vehicular exhaust, and solvent usage. These findings emphasize the necessity of undertaking scientific and systematic measures for priority species and control sources of VOCs emission.

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汾渭平原某城市环境VOCs来源特征、风险评价及臭氧形成敏感性研究
汾渭平原地面O3浓度呈恶化趋势,这对制定O3前体物(VOCs)控制策略提出了更大的挑战。为准确控制VOCs来源,从季节角度有效降低O3浓度,于2021年1月1日至2021年12月31日对运城中学站114种VOCs进行了在线监测。VOCs浓度呈冬季最高、夏季最低的季节变化特征。四季中,烷烃(34.5-41.7%)和挥发性有机化合物(36.6-46.9%)含量最多。具体VOCs种类的排放比表明,机动车尾气、工业污染源和燃烧是主要的VOCs来源。正矩阵分解(PMF)模型表明,工业源和二次转化是夏季的主要贡献源,而燃烧和LPG/NG在冬季的贡献较高。基于2021年的运城市中心城区VOCs排放清查结果显示,运城市中心城区VOCs总排放量为8128.8 t,其中工业过程排放贡献最大;烷烃、芳烃和挥发性有机化合物分别占年VOCs排放量的31.0%、25.8%和25.7%。此外,计算得到的O3前驱体的相对增量反应性(RIR)值表明,烯烃和芳烃是四季中对O3生成最敏感的基团。大气中挥发性有机化合物在所有季节均具有非致癌风险,其主要来源为丙烯醛和工业源、二次转化源和燃烧源。然而,由于1,2-二氯乙烷、1,2-二氯丙烷和苯的存在,环境挥发性有机化合物暴露于明确的致癌风险中,主要风险来自工业来源、汽车尾气和溶剂使用。这些发现强调了采取科学和系统的措施来确定VOCs的重点物种和控制VOCs排放源的必要性。
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来源期刊
Journal of Hazardous Materials
Journal of Hazardous Materials 工程技术-工程:环境
CiteScore
25.40
自引率
5.90%
发文量
3059
审稿时长
58 days
期刊介绍: The Journal of Hazardous Materials serves as a global platform for promoting cutting-edge research in the field of Environmental Science and Engineering. Our publication features a wide range of articles, including full-length research papers, review articles, and perspectives, with the aim of enhancing our understanding of the dangers and risks associated with various materials concerning public health and the environment. It is important to note that the term "environmental contaminants" refers specifically to substances that pose hazardous effects through contamination, while excluding those that do not have such impacts on the environment or human health. Moreover, we emphasize the distinction between wastes and hazardous materials in order to provide further clarity on the scope of the journal. We have a keen interest in exploring specific compounds and microbial agents that have adverse effects on the environment.
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