• Laser & Optoelectronics Progress
  • Vol. 58, Issue 19, 1901002 (2021)
Meng Yang1, Changjian Ni1、*, Zisheng Meng1, and Xinyi Li2
Author Affiliations
  • 1Plateau Atmosphere and Environment Key Laboratory of Sichuan Province, College of Atmospheric Sciences, Chengdu University of Information Technology, Chengdu , Sichuan 610225, China
  • 2Chengdu Meteorological Service, Chengdu , Sichuan 611130, China
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    DOI: 10.3788/LOP202158.1901002 Cite this Article Set citation alerts
    Meng Yang, Changjian Ni, Zisheng Meng, Xinyi Li. Nonstationary Analysis of Aerosol Extinction Coefficient in Chengdu During Autumn and Winter[J]. Laser & Optoelectronics Progress, 2021, 58(19): 1901002 Copy Citation Text show less
    References

    [1] Tang X Y, Zhang Y H, Shao M[M]. Atmospheric environmental chemistry(2006).

    [2] Leibensperger E M, Mickley L J, Jacob D J et al. Climatic effects of 1950-2050 changes in US anthropogenic aerosols: part 1: aerosol trends and radiative forcing[J]. Atmospheric Chemistry and Physics, 12, 3333-3348(2012).

    [3] Lohmann U, Feichter J. Global indirect aerosol effects: a review[J]. Atmospheric Chemistry and Physics, 5, 715-737(2005).

    [4] Coakley Jr J A, Cess R D, Yurevich F B. The effect of tropospheric aerosols on the Earth’s radiation budget: a parameterization for climate models[J]. Journal of the Atmospheric Sciences, 40, 116-138(1983).

    [5] Yang Y S, Ni C J, Deng Y et al. Characteristics of atmospheric extinction coefficient and its components in winter in Chengdu[J]. Acta Scientiae Circumstantiae, 39, 1425-1432(2019).

    [6] Pitchford M, Malm W, Schichtel B et al. Revised algorithm for estimating light extinction from IMPROVE particle speciation data[J]. Journal of the Air & Waste Management Association, 57, 1326-1336(2007).

    [7] Song D L, Tao J, Zhang P et al. Seasonal characterization of particle extinction coefficient and its relation with PM2.5 mass concentration in Chengdu[J]. Journal of University of Chinese Academy of Sciences, 30, 757-762(2013).

    [8] Tao J, Zhang L, Cao J et al. A review of current knowledge concerning PM2.5 chemical composition, aerosol optical properties and their relationships across China[J]. Atmospheric Chemistry and Physics, 17, 1-70(2017).

    [9] Deng H, Tan H B, Li F et al. Impact of relative humidity on visibility degradation during a haze event: a case study[J]. Science of the Total Environment, 569/570, 1149-1158(2016).

    [10] Zang L, Wang Z M, Zhu B et al. Roles of relative humidity in aerosol pollution aggravation over Central China during wintertime[J]. International journal of environmental research and public health, 16, 4422(2019).

    [11] Liu X G, Zhang Y H. Advances in research on aerosol hygroscopic properties at home and abroad[J]. Climatic and Environmental Research, 15, 808-816(2010).

    [12] Chen Y N, Zhao P S, He D et al. Characteristics and parameterization for atmospheric extinction coefficient in Beijing[J]. Environmental Science, 36, 3582-3589(2015).

    [13] Chen J, Zhao C S, Ma N et al. A parameterization of low visibilities for hazy days in the North China Plain[J]. Atmospheric Chemistry and Physics, 12, 4935-4950(2012).

    [14] Sun H H, Ni C J, Cui L et al. Stochastic characteristic analysis of time series of extinction coefficient in Chengdu[J]. Acta Optica Sinica, 36, 0801001(2016).

    [15] Cui L, Ni C J, Sun H H et al. Hygroscopic growth properties of particles in Chengdu and its correction methodology[J]. Acta Scientiae Circumstantiae, 36, 3938-3943(2016).

    [16] Chang D, Song Y, Liu B. Visibility trends in six megacities in China 1973-2007[J]. Atmospheric Research, 94, 161-167(2009).

    [17] Rigby R A, Stasinopoulos D M. Generalized additive models for location, scale and shape (with discussion)[J]. Journal of the Royal Statistical Society: Series C (Applied Statistics), 54, 507-554(2005).

    [18] Xiong L H, Jiang C, Du T. Statistical attribution analysis of the nonstationarity of the annual runoff series of the Weihe River[J]. Water Science and Technology, 70, 939-946(2014).

    [19] Zhang D D, Lu F, Zhou X N et al. GAMLSS model-based analysis on nonstationarity of extreme precipitation in Daduhe River Basin[J]. Water Resources and Hydropower Engineering, 47, 12-15, 20(2016).

    [20] Li Q P, Chen X R, Zhu Y D. Analysis of driving factors of carbon dioxide emission based on GAMLSS model[J]. Advances in Applied Mathematics, 9, 1177-1186(2020).

    [21] Pueschel R F, Noll K E. Visibility and aerosol size frequency distribution[J]. Journal of Applied Meteorology and Climatology, 6, 1045-1052(1967).

    [22] Penndorf R. Tables of the refractive index for standard air and the Rayleigh scattering coefficient for the spectral region between 0.2 and 20.0μ and their application to atmospheric optics[J]. Journal of the Optical Society of America, 47, 176(1957).

    [23] Sloane C S, Wolff G T. Prediction of ambient light scattering using a physical model responsive to relative humidity: validation with measurements from Detroit[J]. Atmospheric Environment (1967), 19, 669-680(1985).

    [24] López J, Francés F. Non-stationary flood frequency analysis in continental Spanish rivers, using climate and reservoir indices as external covariates[J]. Hydrology and Earth System Sciences, 17, 3189-3203(2013).

    [25] Sun H H, Ni C J, Cui L et al. Statistical distribution characteristics of surface extinction efficiency in different humidity conditions[J]. China Powder Science and Technology, 22, 59-63(2016).

    [26] Wei L F, Yang F M, Tan J H et al. Research progress on aerosol extinction properties[J]. Environmental Chemistry, 33, 705-715(2014).

    [27] Zhang Z C, Ni C J, Tang J Y et al. Correlation between equivalent complex refraction index of “dry” aerosol and its mass concentration index[J]. Acta Optica Sinica, 39, 0501002(2019).

    [28] Akaike H. A new look at the statistical model identification[J]. IEEE Transactions on Automatic Control, 19, 716-723(1974).

    [29] Filliben J J. The probability plot correlation coefficient test for normality[J]. Technometrics, 17, 111-117(1975).

    [30] Stasinopoulos M D, Rigby R A, Heller G Z et al[M]. Flexible regression and smoothing: using GAMLSS in R(2017).

    Meng Yang, Changjian Ni, Zisheng Meng, Xinyi Li. Nonstationary Analysis of Aerosol Extinction Coefficient in Chengdu During Autumn and Winter[J]. Laser & Optoelectronics Progress, 2021, 58(19): 1901002
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