Arid
DOI10.5194/acp-16-8109-2016
Optical and microphysical characterization of aerosol layers over South Africa by means of multi-wavelength depolarization and Raman lidar measurements
Giannakaki, Elina1; van Zyl, Pieter G.2; Muller, Detlef3; Balis, Dimitris4; Komppula, Mika1
通讯作者Giannakaki, Elina
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2016
卷号16期号:13页码:8109-8123
英文摘要

Optical and microphysical properties of different aerosol types over South Africa measured with a multi-wavelength polarization Raman lidar are presented. This study could assist in bridging existing gaps relating to aerosol properties over South Africa, since limited long-term data of this type are available for this region. The observations were performed under the framework of the EUCAARI campaign in Elandsfontein. The multi-wavelength Polly(XT) Raman lidar system was used to determine vertical profiles of the aerosol optical properties, i.e. extinction and backscatter coefficients, Angstrom exponents, lidar ratio and depolarization ratio. The mean microphysical aerosol properties, i.e. effective radius and single-scattering albedo, were retrieved with an advanced inversion algorithm. Clear differences were observed for the intensive optical properties of atmospheric layers of biomass burning and urban/industrial aerosols. Our results reveal a wide range of optical and microphysical parameters for biomass burning aerosols. This indicates probable mixing of biomass burning aerosols with desert dust particles, as well as the possible continuous influence of urban/industrial aerosol load in the region. The lidar ratio at 355 nm, the lidar ratio at 532 nm, the linear particle depolarization ratio at 355 nm and the extinction-related Angstrom exponent from 355 to 532 nm were 52 +/- 7 sr, 41 +/- 13 sr, 0.9 +/- 0.4% and 2.3 +/- 0.5, respectively, for urban/industrial aerosols, while these values were 92 +/- 10 sr, 75 +/- 14 sr, 3.2 +/- 1.3% and 1.7 +/- 0.3, respectively, for biomass burning aerosol layers. Biomass burning particles are larger and slightly less absorbing compared to urban/industrial aerosols. The particle effective radius were found to be 0.10 +/- 0.03, 0.17 +/- 0.04 and 0.13 +/- 0.03 mu m for urban/industrial, biomass burning, and mixed aerosols, respectively, while the single-scattering albedo at 532 nm was 0.87 +/- 0.06, 0.90 +/- 0.06, and 0.88 +/- 0.07 (at 532 nm), respectively, for these three types of aerosols. Our results were within the same range of previously reported values.


类型Article
语种英语
国家Finland ; South Africa ; England ; Greece
收录类别SCI-E
WOS记录号WOS:000381091400004
WOS关键词BIOMASS BURNING AEROSOLS ; SAFARI 2000 ; SAHARAN DUST ; TROPOSPHERIC AEROSOLS ; PARTICLE PARAMETERS ; POLARIZATION LIDAR ; SUN PHOTOMETER ; BURNED-AREA ; ASIAN DUST ; BACKSCATTER
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/191570
作者单位1.Finnish Meteorol Inst, POB 1627, Kuopio 70211, Finland;
2.North West Univ, Unit Environm Sci & Management, Potchefstroom, South Africa;
3.Univ Hertfordshire, Sch Phys Astron & Math, Hatfield, Herts, England;
4.Lab Atmospher Phys, Thessaloniki, Greece
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Giannakaki, Elina,van Zyl, Pieter G.,Muller, Detlef,et al. Optical and microphysical characterization of aerosol layers over South Africa by means of multi-wavelength depolarization and Raman lidar measurements[J],2016,16(13):8109-8123.
APA Giannakaki, Elina,van Zyl, Pieter G.,Muller, Detlef,Balis, Dimitris,&Komppula, Mika.(2016).Optical and microphysical characterization of aerosol layers over South Africa by means of multi-wavelength depolarization and Raman lidar measurements.ATMOSPHERIC CHEMISTRY AND PHYSICS,16(13),8109-8123.
MLA Giannakaki, Elina,et al."Optical and microphysical characterization of aerosol layers over South Africa by means of multi-wavelength depolarization and Raman lidar measurements".ATMOSPHERIC CHEMISTRY AND PHYSICS 16.13(2016):8109-8123.
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