Zhu Ke-Xin, Liu Li-Zhong, Liu Huan-Wu, Luo Jing-Qi, Gao Ran-Ran
School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
Xi'an Environmental Monitoring Station, Xi'an 710119, China.
Huan Jing Ke Xue. 2022 Aug 8;43(8):3944-3952. doi: 10.13227/j.hjkx.202110235.
To investigate the characteristics and source apportionment of atmospheric volatile organic compounds (VOCs) in Dalian, the concentration level, composition characteristics, reaction activity, and source apportionment of atmospheric VOCs in Dalian were analyzed based on high-resolution online observation VOCs data from June to August 2020. The results showed that the average (VOCs) was (10.21±5.71)×10, in which alkanes accounted for 66.35%, alkenes for 11.89%, alkynes for 7.75%, and aromatics for 14.01%. VOCs and NO were high at night and low during the day, whereas the change trend of O was opposite. Considering the species activity, it was determined that toluene, ethylene, -xylene, 1-hexene, -butane, isopentane, -pentane, and isoprene were the key species affecting atmospheric VOCs in Dalian. Priority control of olefin and aromatic hydrocarbon emissions is the key to improve O pollution in summer in Dalian. By applying the positive matrix factorization (PMF) model, six major VOCs sources were extracted, namely traffic sources (26.38%), combustion sources (22.75%), industrial emission sources (17.09%), solvent usage sources (14.59%), natural sources (11.72%), and others (7.47%). The emissions of traffic sources and combustion sources are the key pollution sources for O prevention and control in Dalian in summer.
为研究大连大气挥发性有机化合物(VOCs)的特征及来源解析,基于2020年6月至8月高分辨率在线观测的VOCs数据,分析了大连大气VOCs的浓度水平、组成特征、反应活性及来源解析。结果表明,VOCs平均浓度为(10.21±5.71)×10,其中烷烃占66.35%,烯烃占11.89%,炔烃占7.75%,芳烃占14.01%。VOCs和NO夜间浓度高,白天浓度低,而O的变化趋势相反。考虑物种活性,确定甲苯、乙烯、二甲苯、1-己烯、丁烷、异戊烷、戊烷和异戊二烯是影响大连大气VOCs的关键物种。优先控制烯烃和芳烃排放是改善大连夏季O污染的关键。通过应用正定矩阵因子分解(PMF)模型,提取出六大VOCs来源,即交通源(26.38%)、燃烧源(22.75%)、工业排放源(17.09%)、溶剂使用源(14.59%)、自然源(11.72%)和其他源(7.47%)。交通源和燃烧源的排放是大连夏季O防治的关键污染源。