北京
气溶胶
环境科学
波动性(金融)
大气科学
化学
环境化学
光化学
质谱法
地质学
有机化学
中国
金融经济学
经济
法学
色谱法
政治学
作者
Zijun Zhang,Weiqi Xu,Siqi Zeng,Yongchun Liu,Tengyu Liu,Yi Zhang,Aodong Du,Yan Li,Ning Zhang,Junfeng Wang,Eleonora Aruffo,Pengfei Han,Jie Li,Zifa Wang,Yele Sun
标识
DOI:10.1021/acs.estlett.4c00415
摘要
Semivolatile and intermediate volatility organic compounds (S/IVOCs) are known as crucial precursors of secondary organic aerosols (SOA), yet their specific contributions to SOA in urban areas remain unclear. Here, we investigate the real-time SOA formation from urban ambient air in summer in Beijing utilizing an oxidation flow reactor (OFR), coupled with aerosol and proton-transfer-reaction mass spectrometers. Our results show that the maximum photochemical formation of SOA in the OFR reached 2.9 μg m–3 at ∼1.5 days of photochemical age. Primary OA and less oxidized oxygenated OA experience mass loss at high photochemical ages (>3 days) in the OFR, whereas more oxidized oxygenated OA continues to show mass enhancement, indicating the role of heterogeneous processes in the formation of highly aged SOA. Closure studies demonstrate that SOA estimated from the known precursors contribute 50.0 ± 17.3% of the measured SOA. The relatively low contribution (10.3 ± 5.2%) of IVOCs emphasizes the importance of unmeasured S/IVOCs in SOA formation. Furthermore, we illustrate the impact of heat waves on ambient SOA formation by enhancing photochemical oxidation and biogenic emissions in summer.
科研通智能强力驱动
Strongly Powered by AbleSci AI