journal article Feb 01, 2011

Analysis of optical properties of atmospheric aerosols inferred from spectral AODs and Ångström wavelength exponent

Atmospheric Environment Vol. 45 No. 6 pp. 1275-1285 · Elsevier BV
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References
42
[1]
Adeyewa "Wavelength dependence of aerosol optical depth and the fit of the Ångström law" Theoritical Applied Climatology (2003) 10.1007/s00704-002-0707-3
[2]
Ångström "The parameters of atmospheric turbidity" Tellus (1964) 10.1111/j.2153-3490.1964.tb00144.x
[3]
Black carbon aerosols and gaseous pollutants in an urban area in North India during a fog period

K.V.S. Badarinath, K. Madhavi Latha, T.R. Kiran Chand et al.

Atmospheric Research 2007 10.1016/j.atmosres.2006.12.007
[4]
Badarinath "Dust storm over Indian region and its impact on the ground reaching solar radiation-a case study using multi-satellite data and ground measurements" Science of the Total Environment (2007) 10.1016/j.scitotenv.2007.05.031
[5]
Badarinath "Influence of anthropogenic activities on UV index variations – A study over tropical urban region using ground based observations and satellite data" Journal of Atmospheric Chemistry (2008) 10.1007/s10874-008-9103-4
[6]
Badarinath "Long-range transport of aerosols from agriculture crop residue burning in Indo-Gangetic Plains – A study using LIDAR, ground measurements and satellite data" Journal of Atmospheric and Solar Terrestrial Physics (2009) 10.1016/j.jastp.2008.09.035
[7]
Beegum "Spatial distribution of aerosol black carbon over India during pre-monsoon season" Atmospheric Environment (2009) 10.1016/j.atmosenv.2008.11.042
[8]
Devara "A four-year climatology of total column tropical urban aerosol, ozone and water vapor distributions over Pune, India" Aerosol and Air Quality Research (2005) 10.4209/aaqr.2005.06.0007
[9]
Eck "Wavelength dependence of the optical depth of biomass burning, urban, and desert dust aerosols" Journal of Geophysical Research (1999) 10.1029/1999jd900923
[10]
Eck "Column-integrated aerosol optical properties over the Maldives during the northeast monsoon for 1988–2000" Journal of Geophysical Research (2001) 10.1029/2001jd000786
[11]
Eck "Characterization of the optical properties of biomass burning aerosols in Zambia during the 1997 ZIBBEE field campaign" Journal of Geophysical Research (2001) 10.1029/2000jd900555
[12]
Eck "Columnar aerosol optical properties at AERONET sites in central eastern Asia and aerosol transport to the tropical mid-pacific" Journal of Geophysical Research (2005) 10.1029/2004jd005274
[13]
Ganguly "Physical and optical properties of aerosols over an urban location in western India: seasonal variabilities" Journal of Geophysical Research (2006) 10.1029/2006jd007392
[14]
Gogoi "Climatology of columnar aerosol properties and the influence of synoptic conditions: first-time results from the northeastern region of India" Journal of Geophysical Research (2009) 10.1029/2008jd010765
[15]
Kaskaoutis "Investigation on the wavelength dependence of the aerosol optical depth in the Athens area" Quarterly Journal of Royal Meteorological Society (2006) 10.1256/qj.05.183
[16]
Kaskaoutis "Comparison between experimental data and modeling estimates of atmospheric optical depth over Athens, Greece" Journal of Atmospheric and Solar Terrestrial Physics (2006) 10.1016/j.jastp.2006.02.011
[17]
Kaskaoutis "Aerosol climatology: dependence of the Ångström exponent on wavelength over four AERONET sites" Atmospheric Chemistry Physics Discussions (2007) 10.5194/acpd-7-7347-2007
[18]
Kaskaoutis "Comparison of the Angstrom parameters retrieval in different spectral ranges with the use of different techniques" Meteorology Atmospheric Physics (2008) 10.1007/s00703-007-0279-y
[19]
Kaskaoutis "Variations in the aerosol optical properties and types over the tropical urban site of Hyderabad, India" Journal of Geophysical Research (2009) 10.1029/2009jd012423
[20]
King "A method for inferring total ozone content from spectral variation of total optical depth obtained with a solar radiometer" Journal of Atmospheric Science (1976) 10.1175/1520-0469(1976)033<2242:amfito>2.0.co;2
[21]
Kneizys (1980)
[22]
Kumar "Temporal and spectral characteristics of aerosol optical depths in a semi-arid region of southern India" Science of the Total Environment (2009) 10.1016/j.scitotenv.2008.10.028
[23]
Kumar "Size segregated mass concentration and size distribution of near surface aerosols over a tropical semi-arid station, Anantapur: impact of long range transport" Science of the Total Environment (2009) 10.1016/j.scitotenv.2009.06.039
[24]
Leckner "The spectral distribution of solar radiation at the earth’s surface-elements of a model" Solar Energy (1978) 10.1016/0038-092x(78)90187-1
[25]
Moorthy "Multiwavelength solar radiometer network and features of aerosol optical depth at Trivandrum" Indian Journal of Radio Space Physics (1989)
[26]
Moorthy "Optical properties of atmospheric aerosols over the Arabian Sea and Indian Ocean: north–south contrast across the ITCZ" Current Science (1999)
[27]
Moorthy "Influence of changes in prevailing synoptic conditions on the response of aerosol characteristics to Land/Sea breeze circulation at a coastal station" Boundary Layer Meteorology (2003) 10.1023/a:1023073929115
[28]
Moorthy "Temporal heterogeneity in aerosol characteristics and the resulting radiative impact at a tropical coastal station–part 1: microphysical and optical properties" Annales Geophysicae (2007) 10.5194/angeo-25-2293-2007
[29]
Nair "Effects of changes in the atmospheric water vapor content on the physical properties of atmospheric aerosols at a coastal station" Journal of Atmospheric and Solar Terrestrial Physics (1998) 10.1016/s1364-6826(98)00009-1
[30]
O’Neill "Modified Ångström exponent for the characterization of submicrometer aerosols" Applied Optics (2001) 10.1364/ao.40.002368
[31]
O’Neill "Spectral discrimination of coarse and fine mode optical depth" Journal of Geophysical Research (2003) 10.1029/2002jd002975
[32]
Pedros "Column-integrated aerosol, optical properties from ground-based spectroradiometer measurements at Barrax (Spain) during the Digital Airborne Imaging Spectrometer Experiment (DAISEX) campaigns" Journal of Geophysical Research (2003) 10.1029/2002jd003331
[33]
Ramachandran "Regional and seasonal variations in aerosol optical characteristics and their frequency distributions over India during 2001–2005" Journal of Geophysical Research (2008) 10.1029/2007jd008560
[34]
Rao "Southwest Monsoon" (1976)
[35]
Reddy "Measurements of surface ozone at semi-arid site Anantapur (14.62°N, 77.65°E, 331 masl) in India" Journal of Atmospheric Chemistry (2008) 10.1007/s10874-008-9094-1
[36]
Reid "Use of the Ångström exponent to estimate the variability of optical and physical properties of aging smoke particles in Brazil" Journal of Geophysical Research (1999) 10.1029/1999jd900833
[37]
Sagar "Characteristics of aerosol spectral optical depths over Monora park: a high altitude station in the central Himalayas" Journal of Geophysical Research (2004) 10.1029/2003jd003954
[38]
Satheesh "Chemical, microphysical and radiative effects of Indian Ocean aerosols" Journal of Geophysical Research (2002) 10.1029/2002jd002463
[39]
Satheesh "Aerosol optical depth, physical properties and radiative forcing over the Arabian Sea" Meteorological Atmospheric Physics (2006) 10.1007/s00703-004-0097-4
[40]
Schuster "Ångström exponent and bimodal aerosol size distributions" Journal of Geophysical Research (2006) 10.1029/2005jd006328
[41]
Shaw "Investigation of atmospheric extinctions using direct solar radiation measurements made with a multiple wavelength radiometer" Journal of Applied Meteorology (1973) 10.1175/1520-0450(1973)012<0374:ioaeud>2.0.co;2
[42]
Singh "Variability of aerosol parameters over Kanpur, northern India" Journal of Geophysical Research (2004) 10.1029/2004jd004966
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Published
Feb 01, 2011
Vol/Issue
45(6)
Pages
1275-1285
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G. Balakrishnaiah, K. Raghavendra Kumar, B. Suresh Kumar Reddy, et al. (2011). Analysis of optical properties of atmospheric aerosols inferred from spectral AODs and Ångström wavelength exponent. Atmospheric Environment, 45(6), 1275-1285. https://doi.org/10.1016/j.atmosenv.2010.12.002
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