The role of atmospheric volatile organic compounds (VOCs) in ozone formation around China's largest plywood manufacturer

被引:0
作者
Li, Ningjie [1 ,2 ]
Sun, Ting [1 ,2 ]
Mudge, Stephen [1 ,2 ]
Zhang, Yuanxun [3 ]
Gao, Zhenhui [1 ,2 ]
Huang, Lihui [1 ,2 ]
Lin, Jianing [1 ,2 ]
机构
[1] Shandong Univ, Inst Ecoenvironm Forens, Qingdao 266237, Peoples R China
[2] Shandong Univ, Sch Environm Sci & Engn, Qingdao 266237, Peoples R China
[3] Univ Chinese Acad Sci, Natl Observat & Res Stn, Beijing 101408, Peoples R China
关键词
Temporal distribution; Volatile organic compounds; Source apportionment; Regional transport; China's plywood capital; Ozone formation potential; PEARL RIVER DELTA; HEALTH-RISK-ASSESSMENT; SOURCE APPORTIONMENT; SOURCE PROFILES; AIR-POLLUTION; EMISSION CHARACTERISTICS; AROMATIC-HYDROCARBONS; PETROLEUM REFINERY; HONG-KONG; URBAN;
D O I
10.1016/j.envpol.2025.126197
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The volatile organic compounds (VOCs) are a dominant contributor to the formation of ozone (O-3) in Linyi, the plywood capital of China. However, the temporal variations and source origins of VOCs in Linyi remain unclear. This study gathered ambient air samples (n = 214) from the urban center of Linyi during the period April to October of 2021-2023. The total volatile organic compounds (TVOCs) concentrations ranged from 28 ppbv to 32 ppbv with oxygenated volatile organic compounds (OVOCs) taking the large portion (50.76 %) of TVOCs, followed by alkanes (28.11 %), aromatics (13.71 %), alkenes (6.66 %), and alkynes (0.76 %). The OVOCs (44.10 %) were the dominant contributors to ozone formation potential (OFP). Formaldehyde, an OVOC and particular pollutant from plywood industries contributed the most to OFP (similar to 21.60 %). The average concentration of TVOCs in 2022 was the lowest (28.61 +/- 10.76 ppbv), with VOCs species, such as isobutane and propane having the lowest concentrations in 2022 (p < 0.05), reflecting a decrease in transportation activity due to the impacts of pandemic lockdowns. Concentrations of OVOCs were annually increasing because of the annual growth of plywood yield. The TVOCs and OVOCs levels were significantly correlated to O-3 levels (p < 0.01). The concentrations of TVOCs and OVOCs as well as O-3 were highest in June and September (p < 0.05), when the temperature and the degree of photochemical reactions were high. The source apportionment analysis found that plywood industries were the main source (32.90 %) of TVOCs, followed by liquefied petroleum gas (LPG, 21.32 %). Trajectory statistical models (TSM) analysis suggested that Linyi is greatly affected by regional transport from the southwest (31.63 %). This study provides new insights into the mitigation and management of VOCs and O-3 pollution in plywood industry cities.
引用
收藏
页数:10
相关论文
共 101 条
[81]  
Xin-min Z., 2012, Res. Environ. Sci, V25, P1085
[82]   Emissions of Oxygenated Volatile Organic Compounds and Their Roles in Ozone Formation in Beijing [J].
Yan, Xiao ;
Qiu, Xionghui ;
Yao, Zhen ;
Liu, Jiye ;
Wang, Lin .
ATMOSPHERE, 2024, 15 (08)
[83]   Concentration, ozone formation potential and source analysis of volatile organic compounds (VOCs) in a thermal power station centralized area: A study in Shuozhou, China [J].
Yan, Yulong ;
Peng, Lin ;
Li, Rumei ;
Li, Yinghui ;
Li, Lijuan ;
Bai, Huiling .
ENVIRONMENTAL POLLUTION, 2017, 223 :295-304
[84]   Summertime carbonyl compounds in an urban area in the North China Plain: Identification of sources, key precursors and their contribution to O3 formation [J].
Yang, Xue ;
Zhang, Gen ;
Hu, Shuhao ;
Wang, Jinhe ;
Zhang, Pengcheng ;
Zhong, Xuelian ;
Song, Hengyu .
ENVIRONMENTAL POLLUTION, 2023, 331
[85]   Volatile organic compounds (VOCs) in urban air: How chemistry affects the interpretation of positive matrix factorization (PMF) analysis [J].
Yuan, Bin ;
Shao, Min ;
de Gouw, Joost ;
Parrish, David D. ;
Lu, Sihua ;
Wang, Ming ;
Zeng, Limin ;
Zhang, Qian ;
Song, Yu ;
Zhang, Jianbo ;
Hu, Min .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2012, 117
[86]   Measurements of ambient hydrocarbons and carbonyls in the Pearl River Delta (PRD), China [J].
Yuan, Bin ;
Chen, Wentai ;
Shao, Min ;
Wang, Ming ;
Lu, Sihua ;
Wang, Bin ;
Liu, Ying ;
Chang, Chih-Chung ;
Wang, Boguang .
ATMOSPHERIC RESEARCH, 2012, 116 :93-104
[87]   Source profiles of volatile organic compounds associated with solvent use in Beijing, China [J].
Yuan, Bin ;
Shao, Min ;
Lu, Sihua ;
Wang, Bin .
ATMOSPHERIC ENVIRONMENT, 2010, 44 (15) :1919-1926
[88]   Source characteristics of volatile organic compounds during high ozone episodes in Hong Kong, Southern China [J].
Zhang, J. ;
Wang, T. ;
Chameides, W. L. ;
Cardelino, C. ;
Blake, D. R. ;
Streets, D. G. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2008, 8 (16) :4983-4996
[89]   Variations in Levels and Sources of Atmospheric VOCs during the Continuous Haze and Non-Haze Episodes in the Urban Area of Beijing: A Case Study in Spring of 2019 [J].
Zhang, Lihui ;
Wang, Xuezhong ;
Li, Hong ;
Cheng, Nianliang ;
Zhang, Yujie ;
Zhang, Kai ;
Li, Lei .
ATMOSPHERE, 2021, 12 (02) :1-15
[90]   Decadal changes in emissions of volatile organic compounds (VOCs) from on-road vehicles with intensified automobile pollution control: Case study in a busy urban tunnel in south China [J].
Zhang, Yanli ;
Yang, Weiqiang ;
Simpson, Isobel ;
Huang, Xinyu ;
Yu, Jianzhen ;
Huang, Zhonghui ;
Wang, Zhaoyi ;
Zhang, Zhou ;
Liu, Di ;
Huang, Zuzhao ;
Wang, Yujun ;
Pei, Chenglei ;
Shao, Min ;
Blake, Donald R. ;
Zheng, Junyu ;
Huang, Zhijiong ;
Wang, Xinming .
ENVIRONMENTAL POLLUTION, 2018, 233 :806-819