Acta Photonica Sinica, Volume. 52, Issue 3, 0352118(2023)

A New Extinction Measurement System for Air Pollutants

Xiyuan ZHAO, Yumei QI, Yadong QIAO, Yang LI, Yuhang WANG, and Fengping WANG*
Author Affiliations
  • School of Mathematics and Physics, University of Science and Technology Beijing, Beijing 100083, China
  • show less
    References(35)

    [1] S HAN, H BIAN, Y ZHANG et al. Effect of aerosols on visibility and radiation in spring 2009 in Tianjin, China. Aerosol and Air Quality Research, 12, 211-217(2012).

    [2] E M LEIBENSPERGER, L J MICKLEY, D J JACOB et al. Climatic effects of 1950-2050 changes in US anthropogenic aerosols-Part 1: Aerosol trends and radiative forcing. Atmospheric Chemistry and Physics, 12, 3333-3348(2012).

    [3] U POSCHL. Atmospheric aerosols: composition, transformation, climate and health effects. Angewandte Chemie International Edition, 44, 7520-7540(2005).

    [4] U LOHMANN. Aerosol effects on clouds and climate. Space Science Reviews, 125, 129-137(2006).

    [5] J BOÉ. Modulation of the summer hydrological cycle evolution over western Europe by anthropogenic aerosols and soil-atmosphere interactions. Geophysical Research Letters, 43, 7678-7685(2016).

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

    [7] M MUKAI, T NAKAJIMA, T TAKEMURA. A study of anthropogenic impacts of the radiation budget and the cloud field in East Asia based on model simulations with GCM. Journal of Geophysical Research, 113, D12211(2008).

    [8] Y WANG, M WANG, R ZHANG et al. Assessing the effects of anthropogenic aerosols on Pacific storm track using a multiscale global climate model. Proceedings of the National Academy of Science, 111, 6894-6899(2014).

    [9] T SHAO, Y LIU, R WANG et al. Role of anthropogenic aerosols in affecting different-grade precipitation over eastern China: A case study. Science of The Total Environment, 807, 150886(2022).

    [10] D CHANG, Y SONG, B LIU. Visibility trends in six megacities in China 1973-2007. Atmospheric Research, 94, 161-167(2009).

    [11] P ZHAO, X ZHANG, X XU et al. Long-term visibility trends and characteristics in the region of Beijing, Tianjin, and Hebei, China. Atmospheric Research, 101, 711-718(2011).

    [12] X Y ZHANG, Y Q WANG, T NIU et al. Atmospheric aerosol compositions in China: spatial/temporal variability, chemical signature, regional haze distribution and comparisons with global aerosols. Atmospheric Chemistry and Physics, 12, 779-799(2012).

    [13] G FIOCCO, L D SMULLIN. Detection of scattering layers in the upper atmosphere (60140 km) by optical radar. Nature, 199, 1275-1276(1963).

    [14] Dong LIU, Fudi QI, Chuanjia JIN et al. Lidar detection of depolarization ratio of cirrus cloud and dust aerosol over Hefei. Chinese Journal of Atmosphere Sciences, 27, 1093-1100(2003).

    [15] Chenbo XIE, Jun ZHOU, Guming YUE et al. Tropospheric water vapor measurement using a new vehicle mounted Raman lidar. Acta Optica Sinica, 26, 1281-1286(2006).

    [16] Xiaoquan SONG, Jinjia GUO, aizhao YAN et al. Detection of atmospheric aerosol optical parameters by Hyperspectral resolution lidar. Progress in Natural Science, 18, 1009-1015(2008).

    [17] Hairun SONG, Xiaolei WANG, Hao LI et al. Vertical visibility retrieval algorithm based on lidar and its error evaluation. High Power Laser and Particle Beams, 32, 50-56(2020).

    [18] Zongming TAO, Decheng WU, Dong LIU et al. Error estimation of aerosol backscattering coefficient retrieved by lidar. Chinese Journal of Lasers, 38, 212-216(2011).

    [19] M E MILHAM. Determination of optical constants from extinction measurements. Journal of the Optical Society of America, 71, 1099-1106(1981).

    [20] J U WHITE. Long optical paths of large aperture. Journal of the Optical Society of America, 32, 285-288(1942).

    [21] D R HERRIOT, H J SCHULTE. Folded optical delay lines. Applied Optics, 4, 883-889(1965).

    [22] D R HERRIOTT, H KOGELNIK, R KOMPFNER. Off-axis paths in spherical mirror interferometers. Applied Optics, 3, 523-526(1964).

    [23] Rui WANG. Study on long path gas cell of infrared spectrometer, 1-57(2006).

    [24] J OFNER, H U KRUGER, C ZETZSCH. Circular multireflection cell for optical spectroscopy. Applied Optics, 49, 5001-5004(2010).

    [25] Hua XIA, Fengzhong DONG, Guojie TU et al. High sensitivity detection of CO based on a new long path multiple reflection cell. Acta Optica Sinica, 30, 2596-2601(2010).

    [26] Z YANG, Y GUO, X MING et al. Generalized optical design of the Double-row circular multi-pass cell. Sensors, 18, 2680(2018).

    [27] M JIANG, X LIU, D CHEN et al. Light extinction method for measuring a low particle concentration with white cell optics: relationship between light transmittance and particle properties. Energy & Fuels, 33, 12063-12072(2019).

    [28] D S ENSOR, M J PILAT. Calculation of smoke plume opacity from particulate air pollutant properties. Journal of the Air Pollution Control Association, 21, 496-501(1971).

    [29] H HORVATH, R J CHARLSON. The direct optical measurement of atmospheric air pollution. American Industrial Hygiene Association Journal, 30, 500-509(1969).

    [30] M J PILAT, D S ENSOR. Plume opacity and particulate mass concentration. Atmospheric Environment, 4, 163-173(1970).

    [31] Ruxia FAN, Junying SUN, Lu ZHANG et al. Progress in atmospheric aerosol density observation. Journal of Glaciology and Geocryology, 40, 925-933(2018).

    [32] Yang DU. Application range analysis of multi wavelength lidar particle mass concentration detection method, 19-48(2017).

    [33] Y CHAN, R SIMPSON, G MCTAINSH et al. Source apportionment of visibility degradation problems in Brisbane (Australia) using the multiple linear regression techniques. Atmospheric Environment, 33, 3237-3250(1999).

    [34] Yafang CHENG. Radiative properties of atmospheric aerosols in the Pearl River Delta: observation based model method and its application(2008).

    [35] M GARBNER, V KVICERA. The wavelength dependent model of extinction in fog and haze for free space optical communication. Optical Express, 19, 3379-3386(2011).

    Tools

    Get Citation

    Copy Citation Text

    Xiyuan ZHAO, Yumei QI, Yadong QIAO, Yang LI, Yuhang WANG, Fengping WANG. A New Extinction Measurement System for Air Pollutants[J]. Acta Photonica Sinica, 2023, 52(3): 0352118

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Special Issue for Frontiers and Techniques of Laser Spectroscopy

    Received: Jun. 24, 2022

    Accepted: Oct. 11, 2022

    Published Online: Jun. 21, 2023

    The Author Email: WANG Fengping (fpwang@ustb.edu.cn)

    DOI:10.3788/gzxb20235203.0352118

    Topics