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2018-2019 年北京城区 PM 中金属元素的时间变化特征及来源解析。

Temporal variation characteristics and source apportionment of metal elements in PM in urban Beijing during 2018-2019.

机构信息

State Key Joint Laboratory of Environmental Simulation & Pollution Control, School of Environment, Beijing Normal University, Beijing, 100875, China; Center for Atmospheric Environmental Studies, Beijing Normal University, Beijing, 100875, China.

State Key Joint Laboratory of Environmental Simulation & Pollution Control, School of Environment, Beijing Normal University, Beijing, 100875, China; Center for Atmospheric Environmental Studies, Beijing Normal University, Beijing, 100875, China.

出版信息

Environ Pollut. 2021 Jan 1;268(Pt B):115856. doi: 10.1016/j.envpol.2020.115856. Epub 2020 Oct 15.

Abstract

To explore high-resolution temporal variation characteristics of atmospheric metal elements concentration and more accurate pollution sources apportionment, online monitoring of metal elements in PM with 1-h time resolution was conducted in Beijing from August 22, 2018 to August 21, 2019. Concentration of 18 elements varied between detection limit (ranging from 0.1 to 100 ng/m) and nearly 25 μg/m. Si, Fe, Ca, K and Al represented major elements and accounted for 93.47% of total concentration during the study period. Compared with previous studies, airborne metal pollution in Beijing has improved significantly which thanks to strict comprehensive control measures under the Clean Air Action Plan since 2013. Almost all elements present higher concentrations on weekdays than weekends, while concentrations of elements associated with dust sources during holidays are higher than those in working days after the morning peak, and there is almost no concentration difference in the evening peak period. Soil and dust, vehicle non-exhaust emissions, biomass, industrial processes and fuel combustion were apportioned as main sources of atmospheric metal pollution, accounting for 63.6%, 18.4%, 16.8%, 1.0% and 0.18%, respectively. Furthermore, main occurrence season of metal pollution is judged by characteristic radar chart of varied metal elements proposed for the first time in this study, for example, fuel combustion type pollution mainly occurs in winter and spring. Results of 72-h backward trajectory analysis of air masses showed that, except for local emissions, atmospheric metal pollution in Beijing is also affected by regional transport from Inner Mongolia, Hebei, the Bohai Sea and Heilongjiang.

摘要

为了探究大气金属元素浓度的高时间分辨率时空变化特征,并更准确地进行污染源解析,本研究于 2018 年 8 月 22 日至 2019 年 8 月 21 日在北京进行了 PM 中金属元素的 1 小时时间分辨率在线监测。18 种元素的浓度介于检测下限(0.1-100ng/m 之间)与近 25μg/m 之间。在研究期间,Si、Fe、Ca、K 和 Al 代表主要元素,占总浓度的 93.47%。与以往研究相比,由于 2013 年以来实施的《清洁空气行动计划》下的严格综合控制措施,北京的空气金属污染已得到显著改善。几乎所有元素在工作日的浓度均高于周末,而在假期期间与扬尘源有关的元素浓度在早高峰后高于工作日,晚高峰期间浓度差异几乎不存在。土壤和扬尘、机动车非尾气排放、生物质、工业过程和燃料燃烧被分配为大气金属污染的主要来源,分别占 63.6%、18.4%、16.8%、1.0%和 0.18%。此外,本研究首次提出了变化金属元素特征雷达图,根据该图判断出金属污染的主要发生季节,例如,燃料燃烧型污染主要发生在冬春季。气团 72 小时后向轨迹分析结果表明,除本地排放外,北京的大气金属污染还受到来自内蒙古、河北、渤海和黑龙江的区域传输的影响。

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