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DOI10.5194/acp-20-901-2020
Significant contribution of organics to aerosol liquid water content in winter in Beijing, China
Jin X.; Wang Y.; Li Z.; Zhang F.; Xu W.; Sun Y.; Fan X.; Chen G.; Wu H.; Ren J.; Wang Q.; Cribb M.
发表日期2020
ISSN1680-7316
起始页码901
结束页码914
卷号20期号:2
英文摘要

The aerosol liquid water (ALW) content (ALWC), an important component of atmospheric particles, has a significant effect on atmospheric optical properties, visibility and multiphase chemical reactions. In this study, ALWC is determined from aerosol hygroscopic growth factor (GF) and particle number size distribution (PNSD) measurements and is also simulated by ISORROPIA II, a thermodynamic equilibrium model, with measured aerosol chemical composition data taken at an urban site in Beijing from 8 November to 15 December 2017. Rich measurements made during the experiment concerning virtually all aerosol properties allow us not only to derive the ALWC but also to study the contributions by various species for which little has been done in this region. The simulated ALWC including the contribution of organics and the calculated ALWC are highly correlated (coefficient of determination R2Combining double low line0.92). The ALWC contributed by organics (ALWCOrg) accounts for 30 %±22 % of the total ALWC during the sampling period. These results suggest a significant contribution of organics to ALWC, which is rather different from previous studies that showed negligible contributions by organics. Our results also show that ALWC correlates well with the mass concentrations of sulfate, nitrate, and secondary organic aerosols (SOAs) (R2Combining double low line0.66, 0.56 and 0.60, respectively). We further noted that accumulation mode particles play a key role in determining ALWC, dominating among all the aerosol modes. ALWC is an exponential function of ambient relative humidity (RH), whose strong diurnal variation influence the diurnal variation of ALWC. However, there is a 3 h lag between the extremes of ALWC and RH values, due to the diurnal variations in PNSD and aerosol chemical composition. Finally, a case study reveals that ALWCOrg plays an important role in the formation of secondary aerosols through multiphase reactions at the initial stage of a heavy-haze episode.

. © 2020 BMJ Publishing Group. All rights reserved.
语种英语
scopus关键词aerosol composition; aerosol formation; chemical composition; diurnal variation; hygroscopicity; radiative forcing; winter; Beijing [China]; China
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/248028
作者单位State Key Laboratory of Remote Sensing Science, College of Global Change and Earth System Science, Beijing Normal University, Beijing, 100875, China; Key Laboratory for Aerosol-Cloud-Precipitation of China Meteorological Administration, School of Atmospheric Physics, Nanjing University of Information Science and Technology, Nanjing, 210044, China; Earth System Science Interdisciplinary Center, Department of Atmospheric and Oceanic Science, University of Maryland, College Park, MD, United States; State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, 100029, China; College of Earth Sciences and Planetary Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China; Zhejiang Windey Co. Ltd., Hangzhou, 310012, China
推荐引用方式
GB/T 7714
Jin X.,Wang Y.,Li Z.,et al. Significant contribution of organics to aerosol liquid water content in winter in Beijing, China[J],2020,20(2).
APA Jin X..,Wang Y..,Li Z..,Zhang F..,Xu W..,...&Cribb M..(2020).Significant contribution of organics to aerosol liquid water content in winter in Beijing, China.ATMOSPHERIC CHEMISTRY AND PHYSICS,20(2).
MLA Jin X.,et al."Significant contribution of organics to aerosol liquid water content in winter in Beijing, China".ATMOSPHERIC CHEMISTRY AND PHYSICS 20.2(2020).
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