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城市和郊区气溶胶垂直廓线的对比观测:局地和区域传输的影响。

Comparative observation of aerosol vertical profiles in urban and suburban areas: Impacts of local and regional transport.

机构信息

Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP(3)), Department of Environmental Science and Engineering, Fudan University, Shanghai 200433, China.

Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP(3)), Department of Environmental Science and Engineering, Fudan University, Shanghai 200433, China; Institute of Eco-Chongming (IEC), No. 20 Cuiniao Road, Shanghai 202162, China.

出版信息

Sci Total Environ. 2022 Jan 20;805:150363. doi: 10.1016/j.scitotenv.2021.150363. Epub 2021 Sep 16.

Abstract

Ground-based Multi-Axis Differential Optical Absorption Spectroscopy (MAX-DOAS) instruments were used to carry out observation of aerosol in the urban and suburban areas of Shanghai from October 17 to November 21, 2019. Fudan University (FDU) site is a typical urban environment, surrounded by residential areas, commercial areas and arterial roads, while Dianshan Lake (DSL) site is a suburban environment with high vegetation coverage and no pollutant emission sources. The aerosol retrieved by MAX-DOAS was in good correlation with the observation of sun photometer and the PM concentration of the corresponding site, which demonstrates that the aerosol retrieved by MAX-DOAS is reliable and feasible. Comparing the mean aerosol extinction coefficient (AEC) profiles during the observation period between urban and suburban areas, it was found that the occurrence of high aerosol concentration at FDU was nearly 3 h later than that of DSL at suburban site. And the aerosol at DSL was concentrated at an altitude of 0.3- 0.5 km, with a mean peak value of 0.486 km, which was slightly higher than the peak AEC of 0.453 km at FDU of 0.2- 0.4 km. The difference in aerosol characteristics between the two sites may be due to the fact that the influences of aerosol transport and boundary layer dynamics are different between the two sites. The backward trajectories analysis also presents that there were mutual transports of aerosol between urban and suburban areas, which affect the optical properties of the aerosol in these two sites. In a case of aerosol pollution, we visualized the transport pathway of aerosol from the western part of the North China Plain to Shanghai using AEC profiles and backward trajectories, providing the evidence that the local aerosol pollution in Shanghai was affected by long-distance transport.

摘要

基于地面的多轴差分光学吸收光谱(MAX-DOAS)仪器用于对 2019 年 10 月 17 日至 11 月 21 日上海市区和郊区的气溶胶进行观测。复旦大学(FDU)站点是一个典型的城市环境,周围有居民区、商业区和主要道路,而淀山湖(DSL)站点是一个郊区环境,植被覆盖率高,没有污染物排放源。MAX-DOAS 反演的气溶胶与太阳光度计观测和相应站点的 PM 浓度有很好的相关性,这表明 MAX-DOAS 反演的气溶胶是可靠和可行的。比较市区和郊区观测期间的平均气溶胶消光系数(AEC)廓线,发现 FDU 处高气溶胶浓度的发生时间比郊区 DSL 站点晚近 3 小时。而 DSL 的气溶胶集中在 0.3-0.5km 的高度,平均峰值为 0.486km,略高于 FDU 的 0.2-0.4km 处的峰值 AEC 0.453km。两个站点之间气溶胶特征的差异可能是由于气溶胶传输和边界层动力学的影响在两个站点不同。后向轨迹分析还表明,市区和郊区之间存在气溶胶的相互传输,这会影响这两个站点气溶胶的光学性质。在一次气溶胶污染事件中,我们使用 AEC 廓线和后向轨迹可视化了从华北平原西部到上海的气溶胶传输路径,为上海的本地气溶胶污染受远距离传输影响提供了证据。

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