Acta Optica Sinica, Volume. 41, Issue 3, 0301001(2021)

Hygroscopic Growth Model and Scattering Characteristics of Two-Particle Agglomerated Aerosol

Fang Gu1、*, Jiahong Zhang2,3, Yunyun Chen1, Jiajia Zhao1, Fenping Cui1, Min Li2,3, and Jing Zhao1
Author Affiliations
  • 1School of Physics and Optoelectronic Engineering, Nanjing University of Information Science and Technology, Nanjing, Jiangsu 210044, China
  • 2Jiangsu Collaborative Innovation Center on Atmospheric Environment and Equipment Technology, Nanjing University of Information Science and Technology, Nanjing, Jiangsu 210044, China
  • 3Jiangsu Key Laboratory of Meteorological Observation and Information Processing, Nanjing University of Information Science and Technology, Nanjing, Jiangsu 210044, China
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    References(35)

    [1] Jia R, Luo M, Liu Y Z et al. Anthropogenic aerosol pollution over the eastern slope of the Tibetan Plateau[J]. Advances in Atmospheric Sciences, 36, 847-862(2019).

    [2] Feng Y, Chen D M, Zhang X H. Atmospheric aerosol pollution across China: a spatiotemporal analysis of satellite-based aerosol optical depth during 2000—2016[J]. International Journal of Digital Earth, 12, 843-857(2019).

    [3] Yu M M, Yuan X L, He Q Q et al. Temporal-spatial analysis of crop residue burning in China and its impact on aerosol pollution[J]. Environmental Pollution, 245, 616-626(2019).

    [5] Fei Y, Fu D S, Song Z J et al. Spatiotemporal variability of surface extinction coefficient based on two-year hourly visibility data in mainland China[J]. Atmospheric Pollution Research, 10, 1944-1952(2019).

    [11] Craig R L, Nandy L, Axson J L et al. Spectroscopic determination of aerosol pH from acid-base equilibria in inorganic, organic, and mixed systems[J]. The Journal of Physical Chemistry A, 121, 5690-5699(2017).

    [12] Shi G, Xu J, Peng X et al. pH of aerosols in a polluted atmosphere: source contributions to highly acidic aerosol[J]. Environmental Science & Technology, 51, 4289-4296(2017).

    [13] Gustafsson Ö, Ramanathan V. Convergence on climate warming by black carbon aerosols[J]. Proceedings of the National Academy of Sciences of the United States of America, 113, 4243-4245(2016).

    [14] Najafi M R, Zwiers F W, Gillett N P. Attribution of arctic temperature change to greenhouse-gas and aerosol influences[J]. Nature Climate Change, 5, 246-249(2015).

    [18] Textor C, Schulz M, Guibert S et al. Analysis and quantification of the diversities of aerosol life cycles within AeroCom[J]. Atmospheric Chemistry and Physics, 6, 1777-1813(2006).

    [19] Zhu Q, He L Y, Huang X F et al. Atmospheric aerosol compositions and sources at two national background sites in northern and Southern China[J]. Atmospheric Chemistry and Physics, 16, 10283-10297(2016).

    [25] Shi Y J, Ge M F, Wang W G. Hygroscopicity of internally mixed aerosol particles containing benzoic acid and inorganic salts[J]. Atmospheric Environment, 60, 9-17(2012).

    [28] Petters M D, Kreidenweis S M. A single parameter representation of hygroscopic growth and cloud condensation nucleus activity[J]. Atmospheric Chemistry and Physics, 7, 1961-1971(2007).

    [33] William M H. CRC handbook of chemistry and physics[M]. 95th ed. Boca Raton: Taylor & Francis Group, 123-133(2014).

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    Fang Gu, Jiahong Zhang, Yunyun Chen, Jiajia Zhao, Fenping Cui, Min Li, Jing Zhao. Hygroscopic Growth Model and Scattering Characteristics of Two-Particle Agglomerated Aerosol[J]. Acta Optica Sinica, 2021, 41(3): 0301001

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    Paper Information

    Category: Atmospheric Optics and Oceanic Optics

    Received: May. 6, 2020

    Accepted: Sep. 4, 2020

    Published Online: Feb. 28, 2021

    The Author Email: Gu Fang (gfnuist@163.com)

    DOI:10.3788/AOS202141.0301001

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