Arid
DOI10.5194/acp-14-11753-2014
Aerosol characterization at the Saharan AERONET site Tamanrasset
Guirado, C.1,2; Cuevas, E.2; Cachorro, V. E.1; Toledano, C.1; Alonso-Perez, S.2,3,4; Bustos, J. J.2; Basart, S.5; Romero, P. M.2; Camino, C.2; Mimouni, M.6; Zeudmi, L.6; Goloub, P.7; Baldasano, J. M.5,8; de Frutos, A. M.1
通讯作者Guirado, C.
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2014
卷号14期号:21页码:11753-11773
英文摘要

More than 2 years of columnar atmospheric aerosol measurements (2006-2009) at the Tamanrasset site (22.79 degrees N, 5.53 degrees E, 1377 ma.s.l.), in the heart of the Sahara, are analysed. Aerosol Robotic Network (AERONET) level 2.0 data were used. The KCICLO (K is the name of a constant and ciclo means cycle in Spanish) method was applied to a part of the level 1.5 data series to improve the quality of the results. The annual variability of aerosol optical depth (AOD) and Angstrom exponent (AE) has been found to be strongly linked to the convective boundary layer (CBL) thermodynamic features. The dry-cool season (autumn and winter) is characterized by a shallow CBL and very low mean turbidity (AOD similar to 0.09 at 440 nm, AE similar to 0.62). The wet-hot season (spring and summer) is dominated by high turbidity of coarse dust particles (AE similar to 0.28, AOD similar to 0.39 at 440 nm) and a deep CBL. The aerosol-type characterization shows desert mineral dust as the prevailing aerosol. Both pure Saharan dust and very clear sky conditions are observed depending on the season. However, several case studies indicate an anthropogenic fine mode contribution from the industrial areas in Libya and Algeria. The concentration weighted trajectory (CWT) source apportionment method was used to identify potential sources of air masses arriving at Tamanrasset at several heights for each season. Microphysical and optical properties and precipitable water vapour were also investigated.


类型Article
语种英语
国家Spain ; Algeria ; France
收录类别SCI-E
WOS记录号WOS:000344985700012
WOS关键词WEST-AFRICAN MONSOON ; INTERTROPICAL DISCONTINUITY REGION ; SKY RADIANCE MEASUREMENTS ; NMMB/BSC-DUST MODEL ; OPTICAL DEPTH ; DESERT DUST ; BOUNDARY-LAYER ; ANGSTROM EXPONENT ; NORTHERN AFRICA ; GLOBAL SCALES
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
来源机构Arizona State University
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/180920
作者单位1.Univ Valladolid GOA UVA, Atmospher Opt Grp, Valladolid, Spain;
2.State Meteorol Agcy Spain AEMET, IARC, Santa Cruz De Tenerife, Spain;
3.CSIC, Inst Environm Assessment & Water Res, Barcelona, Spain;
4.Univ Europea Canarias, Laureate Int Univ, La Orotava, Spain;
5.CNS, BSC, Earth Sci Dept, Barcelona, Spain;
6.Direct Meteo Reg Sud, Off Natl Meteorol, Tamanrasset, Algeria;
7.Univ Sci & Technol Lille, Lab Opt Atmospher, Lille, France;
8.Tech Univ Catalonia, Environm Modeling Lab, Barcelona, Spain
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Guirado, C.,Cuevas, E.,Cachorro, V. E.,et al. Aerosol characterization at the Saharan AERONET site Tamanrasset[J]. Arizona State University,2014,14(21):11753-11773.
APA Guirado, C..,Cuevas, E..,Cachorro, V. E..,Toledano, C..,Alonso-Perez, S..,...&de Frutos, A. M..(2014).Aerosol characterization at the Saharan AERONET site Tamanrasset.ATMOSPHERIC CHEMISTRY AND PHYSICS,14(21),11753-11773.
MLA Guirado, C.,et al."Aerosol characterization at the Saharan AERONET site Tamanrasset".ATMOSPHERIC CHEMISTRY AND PHYSICS 14.21(2014):11753-11773.
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