Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean Area

Eight measurement campaigns for the characterization of atmospheric aerosol properties were conducted from 2001 until 2008 at five sites located in the Western Mediterranean basin. Radiometric measurements were used to obtain Aerosol Optical Depth, Ångström parameters, and aerosol size distributions...

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Main Authors: G. Pavese, M. Calvello, F. Esposito, L. Leone, R. Restieri
Format: Article
Language:English
Published: Hindawi Limited 2012-01-01
Series:Advances in Meteorology
Online Access:http://dx.doi.org/10.1155/2012/730579
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spelling doaj-cc1f7f3aabe74c03b9cb390c7a2926192020-11-24T22:55:19ZengHindawi LimitedAdvances in Meteorology1687-93091687-93172012-01-01201210.1155/2012/730579730579Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean AreaG. Pavese0M. Calvello1F. Esposito2L. Leone3R. Restieri4Institute of Methodologies for Environmental Analysis, National Council of Research, Contrada S. Loja, 85050 Tito Scalo, ItalyInstitute of Methodologies for Environmental Analysis, National Council of Research, Contrada S. Loja, 85050 Tito Scalo, ItalyEnvironmental Engineering and Physics Department, Basilicata University, Contrada Macchia Romana, 85100 Potenza, ItalyBasilicata Asbestos Regional Center, Basilicata Regional Agency for the Environment, Via della Fisica, 18 C/D, 85100 Potenza, ItalyBasilicata Asbestos Regional Center, Basilicata Regional Agency for the Environment, Via della Fisica, 18 C/D, 85100 Potenza, ItalyEight measurement campaigns for the characterization of atmospheric aerosol properties were conducted from 2001 until 2008 at five sites located in the Western Mediterranean basin. Radiometric measurements were used to obtain Aerosol Optical Depth, Ångström parameters, and aerosol size distributions, allowing differentiation of background conditions from anthropogenic, marine, or Saharan dust aerosol advection. The analysis was focused on the study of optical and physical properties variation of atmospheric aerosols under Saharan outbreaks. Dust-affected data were analysed all together, independently from the measurements site, thus allowing the highlighting of similarities and differences among them. The scatter-plot Ångström exponent versus AOD at 780 nm shows a correlation among all dust data, while an overlapping region with no-dust data reveals the simultaneous presence of mineral, anthropogenic, and marine particles. Daily averaged volume size distributions can be unimodal or bimodal functions and one three-modal distribution, with a coarse mode generally prevailing. Finally, considering the ratio of small/large particles 𝑛𝑠/𝑛𝑙 and plotting the corresponding histogram for all dust data, a sharp frequency distribution is obtained with 89% of data in the range 5–65, while 89% of no-dust data extend from 5 to 135, in spite of different sources, pathways, and arrival sites.http://dx.doi.org/10.1155/2012/730579
collection DOAJ
language English
format Article
sources DOAJ
author G. Pavese
M. Calvello
F. Esposito
L. Leone
R. Restieri
spellingShingle G. Pavese
M. Calvello
F. Esposito
L. Leone
R. Restieri
Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean Area
Advances in Meteorology
author_facet G. Pavese
M. Calvello
F. Esposito
L. Leone
R. Restieri
author_sort G. Pavese
title Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean Area
title_short Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean Area
title_full Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean Area
title_fullStr Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean Area
title_full_unstemmed Effects of Saharan Dust Advection on Atmospheric Aerosol Properties in the West-Mediterranean Area
title_sort effects of saharan dust advection on atmospheric aerosol properties in the west-mediterranean area
publisher Hindawi Limited
series Advances in Meteorology
issn 1687-9309
1687-9317
publishDate 2012-01-01
description Eight measurement campaigns for the characterization of atmospheric aerosol properties were conducted from 2001 until 2008 at five sites located in the Western Mediterranean basin. Radiometric measurements were used to obtain Aerosol Optical Depth, Ångström parameters, and aerosol size distributions, allowing differentiation of background conditions from anthropogenic, marine, or Saharan dust aerosol advection. The analysis was focused on the study of optical and physical properties variation of atmospheric aerosols under Saharan outbreaks. Dust-affected data were analysed all together, independently from the measurements site, thus allowing the highlighting of similarities and differences among them. The scatter-plot Ångström exponent versus AOD at 780 nm shows a correlation among all dust data, while an overlapping region with no-dust data reveals the simultaneous presence of mineral, anthropogenic, and marine particles. Daily averaged volume size distributions can be unimodal or bimodal functions and one three-modal distribution, with a coarse mode generally prevailing. Finally, considering the ratio of small/large particles 𝑛𝑠/𝑛𝑙 and plotting the corresponding histogram for all dust data, a sharp frequency distribution is obtained with 89% of data in the range 5–65, while 89% of no-dust data extend from 5 to 135, in spite of different sources, pathways, and arrival sites.
url http://dx.doi.org/10.1155/2012/730579
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