• Journal of Atmospheric and Environmental Optics
  • Vol. 10, Issue 2, 139 (2015)
Shanshan WANG1 and Bin ZHOU2、*
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3969/j.issn.1673-6141.2015.02.006 Cite this Article
    WANG Shanshan, ZHOU Bin. Progress in Aerosol Measurements Based on Differential Optical Absorption Spectroscopy Method[J]. Journal of Atmospheric and Environmental Optics, 2015, 10(2): 139 Copy Citation Text show less
    References

    [1] Seinfeld J H, Pandis S N. Atmospheric Chemistry and Physics: from Air Pollution to Climate Change[M]. 2nd ed., New York: Wiley, 2006.

    [2] Husar R B, Prospero J M, Stowe L L. Characterization of tropospheric aerosols over the oceans with the NOAA advanced very high resolution radiometer optical thickness operational product[J]. J. Geophys. Res., 1997, 102: 16889-16909.

    [3] Herman J R, Bhartia P K, Torres O, et al. Global distribution of UV-absorbing aerosols from Nimbus 7/TOMS data[J]. J. Geophys. Res., 1997, 102: 16911-16922.

    [4] Jickells T D, An Z S, Andersen K K, et al. Global iron connections between desert dust, ocean biogeochemistry, and climate[J]. Science, 2005, 308: 67-71.

    [5] Cheng T T, Zhang R J, Han Z W, et al. Relationship between ground-based particle component and column aerosol optical properties in dusty days over Beijing[J]. Geophys. Res. Lett., 2008, 35: L20808.

    [6] Fu Q Y, Zhuang G S, Wang J, et al. Mechanism of formation of the heaviest pollution episode ever reeorded in the Yangtze River Delta, China[J]. Atmos. Environ., 2008, 42: 2023-2036.

    [7] Lin P, Hu M, Deng Z, et al. Seasonal and diurnal variations of organic carbon in PM2.5 in Beijing and the estimation of secondary organic carbon[J]. J. Geophys. Res., 2009, 114: D00G11.

    [8] Xiao R, Takegawa N, Kondo Y, et al. Formation of submicron sulfate and organic aerosols in the outflow from the urban region of the Pearl River Delta in China[J]. Atmos. Environ., 2009, 43: 3754-3763.

    [9] Huang R J, Zhang Y L, Bozzetti C, et al. High secondary aerosol contribution to particulate pollution during haze events in China[J]. Nature, 2014, 514: 218-222.

    [10] Solomon S, Qin D, Manning M, et al. Climate change 2007: the physical science[R]. Cambridge, United Kingdom and New York, NY, USA: Cambridge University Press, 2007: 131-217.

    [11] Huebert B J, Bates T, Russell P B, et al. An overview of ACE-Asia: strategies for quantifying the relationships between Asian aerosols and their climatic impacts[J]. J. Geophys. Res., 2003, 108: 8633.

    [12] Ramanathan V, Crutzen P J. New directions: Atmospheric brown clouds[J]. Atmos. Environ., 2003, 37: 4033-4035.

    [13] Andreae M O, Jones C D, Cox P M. Strong present-day aerosol cooling implies a hot future[J]. Nature, 2005, 435: 1187-1190.

    [14] Mercado L M, Bellouin N, Sitch S, et al. Impact of changes in diffuse radiation on the global land carbon sink[J]. Nature, 2009, 458: 1014-1017.

    [15] Platt U. Differential Optical Absorption Spectroscopy (DOAS)[C]. In M. W. Sigrist (Ed.), Air Monitoring by Spectoscopic Techniques[M]. Volume 127 of Chemical Analysis, New York. Wiley-Interscience: 1994.

    [16] Platt U, Perner D, Ptz H W. Simultaneous measurements of atmospheric CH2 O, O3 and NO2 by differential optical absortion[J]. J. Geophys. Res., 1979, 84: 6329-6335.

    [17] Platt U, Stutz J. Differential Optical Absorption Spectroscopy-Principles and Applications[M]. Berlin: Springer, 2008.

    [18] Perner D, Ehhalt D H, Ptz H W, et al. OH radicals in the lower troposphere[J]. Geophys. Res. Lett., 1976, 3: 466-468.

    [19] Axelsson H, Galle B, Gustavsson K, et al. A transmitting/receiving telescope for DOAS-measurements using retroreflector technique[C]. In: Digest of Topical Meeting on Optical Remote Sensing of the Atmosphere[A]. 1990, 4: 641-644.

    [20] Ritz D, Hausmann M, Platt U. An improved open-path multireflection cell for the measurement of NO2 and NO3[C]. In: Proceedings Europto Series, Optical Methods in Atmospheric Chemistry[A]. SPIE, 1992, 1715: 200-211.

    [21] Pundt I, Mettendorf K U, Laepple T, et al. Measurements of trace gas distributions using Long-path DOAS-Tomography during the motorway campaign BAB II: experimental setup and results for NO2[J]. Atmos. Environ., 2005, 39: 967-975

    [22] Smith J, Solomon S. Atmospheric NO3 1990: 3. Sunrise disappearance and the stratospheric profile[J]. J. Geophys. Res., 1990, 95: 13819-13827.

    [23] Sanders R W, Solomon S, Smith J P, et al. Visible and near-UV spectroscopy at McMurdo station, Antarctica, 9. Observations of OClO from April to October 1991[J]. J. Geophys. Res., 1993, 98: 7219-7228.

    [24] Hnninger G, Friedeburg C V, Platt U. Multi axis differential absorption spectroscopy (MAX-DOAS)[J]. Atmos. Chem. Phys., 2004, 4: 231-254.

    [25] Leigh R J, Corlett G K, Frieβ U, et al. A concurrent multi-axis differential optical absorption spectroscopy system for the measurement of tropospheric nitrogen dioxide[J]. Appl. Opt., 2006, 45: 7504-7518.

    [26] Heckel A, Richter A, Tarsu T, et al. MAX-DOAS measurements of formaldehyde in the Po-Valley[J]. Atmos. Chem. Phys., 2005, 5: 909-918.

    [27] Sinreich R, Volkamer R, Filsinger F, et al. MAX-DOAS detection of glyoxal during ICARTT 2004[J]. Atmos. Chem. Phys., 2007, 7: 1293-1303.

    [28] Lee J S, Kim Y J. Extinction measurement using a differential optical absorption spectrometer system[J]. J. Korean Phys. Soc., 2003, 42: 731-734.

    [29] Müller T, Müller D, Bubois R. Particle extinction measured at ambient conditions with differential optical absorption spectroscopy. 1. System setup and characterization[J]. Appl. Opt., 2005, 44(9): 1657-1666.

    [30] Müller T, Müller D, Bubois R. Particle extinction measured at ambient conditions with differential optical absorption spectroscopy. 2. Closure study[J]. Appl. Opt., 2006, 45(10): 2295-2305.

    [31] Skupin A, Ansmann A, Engelmann R, et al. The Spectral Aerosol Extinction Monitoring System (SAEMS): setup, observational products, and comparisons[J]. Atmos. Meas. Tech., 2014, 7: 701-712.

    [32] Hao Nan, Zhou Bin, Chen Limin. Measurement of nitrous acid and retrieval of aerosol parameters with differential optical absorption spectroscopy[J]. Acta Physica Sinica, 2006, 55: 1529-1533(in Chinese).

    [33] Si Fuqi, Liu Jianguo, Xie Pinhua, et al. Determination of size distribution of atmospheric aerosol by DOAS[J]. Acta Physica Sinica, 2006, 55: 3165-3169(in Chinese).

    [34] Li Suwen, Si Fuqi, Zhao Xin. Retrieval method of near ground aerosol extinction coefficient based on remote sensing[J]. Journal of Electronic Measurement and Instrument, 2009, 23: 69-73(in Chinese).

    [35] Si Fuqi, Liu Jianguo, Xie Pinhua, et al. Determination of aerosol optical thickness and atmospheric visibility by differential optical absorption spectroscopy[J]. Acta Optica Sinica, 2006, 26: 961-964(in Chinese).

    [36] Si Fuqi, Liu Jianguo, Xie Pinhua, et al. Determination of the error of aerosol extinction coefficient measured by DOAS[J]. Spectroscopy and Spectral Analysis, 2006, 26: 1810-1811(in Chinese).

    [37] Si Fuqi, Xie Pinhua, Liu Jianguo, et al. Determination of the retrieval arithmetic of aerosol size distribution measured by DOAS[J]. Spectroscopy and Spectral Analysis, 2008, 28: 2417-2020(in Chinese).

    [38] Wagner T, Dix B, Friedeburg C V, et al. MAX-DOAS O4 measurements: A new technique to derive information on atmospheric aerosols-Principles and information content[J]. J. Geophys. Res., 2004, 119: D22205.

    [39] Pfeilsticker K, Erle F, Platt U. Absorption of solar radiation by atmospheric O4[J]. J. Atmos. Sci., 1997, 54: 933-939.

    [40] Meena G S, Bhosale C S, Jadhav D B. Influence of tropospheric clouds on ground-based measurements of stratospheric trace gases at Tropical station, Pune[J]. Atmos. Environ., 2004, 38: 3459-3468.

    [41] Wang Shanshan. Study on the Retrieval of NO2 and Aerosol Pollution in Shanghai Urban Area Based on the Passive DOAS Technique[D]. Shanghai: Doctorial Dissertation of Fudan University, 2012(in Chinese).

    [42] Wittrock F, Oetjen H, Richter A., et al. MAX-DOAS measurements of atmospheric trace gases in Ny-lesund-radiative transfer studies and their application[J]. Atmos. Chem. Phys., 2004, 4: 955-966.

    [43] Frieβ U, Monks P S, Remedios J J, et al. MAX-DOAS O4 measurements: a new technique to derive information on atmospheric aerosols: 2. Modeling studies[J]. J. Geophys. Res., 2006, 111: D14204.

    [44] Irie H, Kanaya Y, Akimoto H, et al. First retrieval of tropospheric aerosol profiles using MAX-DOAS and comparison with lidar and sky radiometer measurements[J]. Atmos. Chem. Phys., 2008, 8: 341-350.

    [45] Clémer K, Van Roozendael M, Fayt C, et al. Multiple wavelength retrieval of tropospheric aerosol optical properties from MAXDOAS measurements in Beijing[J]. Atmos. Meas. Tech., 2010, 3: 863-878.

    [46] Li X, Brauers T, Shao M, et al. MAX-DOAS measurements in southern China: retrieval of aerosol extinctions and validation using ground-based in-situ data[J]. Atmos. Chem. Phys., 2010, 10: 2079-2089.

    [47] Lee H, Irie H, Gu M, et al. Remote sensing of tropospheric aerosol using UV MAX-DOAS during hazy conditions in winter: Utilizing of O4 absorption bands at wavelength intervals of 338-368 nm and 367-393 nm[J]. Atmos. Environ., 2011, 45: 5760-5769.

    [48] Vlemmix T, Hendrick F, Pinardi G, et al. MAX-DOAS observations of aerosols, formaldehyde and nitrogen dioxide in the Beijing area: comparison of two profile retrieval approaches[J]. Atmos. Meas. Tech. Discuss., 2014, 7: 9673-9731.

    [49] Baidar S, Oetjen H, Coburn S, et al. The CU Airborne MAX-DOAS instrument: vertical profiling of aerosol extinction and trace gases[J]. Atmos. Meas. Tech., 2013, 6: 719-739.

    [50] Si Fuqi, Xie Pinhua, Dou Ke, et al. Determination of the atmospheric aerosol optical density by multi axis differential optical absorption spectroscopy[J]. Acta Physica Sinica, 2010, 59: 2867-2872(in Chinese).

    [51] Wang Yang, Li Ang, Xie Pinhua, et al. Retrieving vertical profile of aerosol extinction by multi-axis differential optical absorption spectroscopy[J]. Acta Physica Sinica, 2013, 62: 180705(in Chinese).

    [52] Wang Yang, Wagner T, Li Ang, et al. Research of classification of cloud and aerosol using multi-axis differential optical absorption spectroscopy[J]. Acta Physica Sinica, 2014, 63: 110708(in Chinese).

    [53] Wang S S, Zhao H, Yang S N, et al. Correlation between atmospheric O4 and H2 O absorption in visible band and its implication to dust and haze events in Shanghai, China[J]. Atmos. Environ., 2012, 62: 164-171.

    [54] Zhou Haijin, Liu Wenqing, Si Fuqi, et al. O4 slant column density measurement and error correcting using multi axis differential optical absorption spectroscopy[J]. Journal of Atmospheric and Environmental Optics, 2012, 7: 116-123(in Chinese).

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    WANG Shanshan, ZHOU Bin. Progress in Aerosol Measurements Based on Differential Optical Absorption Spectroscopy Method[J]. Journal of Atmospheric and Environmental Optics, 2015, 10(2): 139
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