Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)

The EOLE multi-wavelength aerosol Ramandepolarization lidar, and the AIAS depolarization lidar, in synergy with a sun photometer (CIMEL), were used, in the period 2007-2016, to provide the vertical profiles of the aerosol optical properties over Athens, Greece. More than 30 biomass burning events (f...

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Main Authors: Mylonaki Maria, Papayannis Alexandros, Mamouri Rodanthi, Argyrouli Athina, Kokkalis Panagiotis, Tsaknakis Georgios, Soupiona Ourania
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201817605022
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spelling doaj-389aecdf833d40d6bdf2c234822a569e2021-08-02T20:07:57ZengEDP SciencesEPJ Web of Conferences2100-014X2018-01-011760502210.1051/epjconf/201817605022epjconf_ilrc28_05022Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)Mylonaki MariaPapayannis AlexandrosMamouri RodanthiArgyrouli AthinaKokkalis PanagiotisTsaknakis GeorgiosSoupiona OuraniaThe EOLE multi-wavelength aerosol Ramandepolarization lidar, and the AIAS depolarization lidar, in synergy with a sun photometer (CIMEL), were used, in the period 2007-2016, to provide the vertical profiles of the aerosol optical properties over Athens, Greece. More than 30 biomass burning events (fresh and aged smoke particles) were observed, with smoke layers between 1.5 up to 4-5 km height, while their duration ranged from 1-3 days. Lidar ratio (LR) values ranged from 40-105 sr (at 355 nm) and from 40-100 sr (at 532 nm), while the linear particle depolarization ratio (LPDR) at both 355 and 532 nm, remained <7%. The extinction-related Ångström exponent (AEa) at 355 nm/532 nm) ranged from 0.3 to 2.1. Additionally, a case of a near-range transport of biomass burning aerosols arriving over Athens up to 4 km height, between 27 and 28 June 2016, was studied. For this case, we found LRs of the order of 70±5 sr (355 nm) and 65±15 sr (532 nm) and AEa(355 nm/532 nm) around 1.https://doi.org/10.1051/epjconf/201817605022
collection DOAJ
language English
format Article
sources DOAJ
author Mylonaki Maria
Papayannis Alexandros
Mamouri Rodanthi
Argyrouli Athina
Kokkalis Panagiotis
Tsaknakis Georgios
Soupiona Ourania
spellingShingle Mylonaki Maria
Papayannis Alexandros
Mamouri Rodanthi
Argyrouli Athina
Kokkalis Panagiotis
Tsaknakis Georgios
Soupiona Ourania
Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)
EPJ Web of Conferences
author_facet Mylonaki Maria
Papayannis Alexandros
Mamouri Rodanthi
Argyrouli Athina
Kokkalis Panagiotis
Tsaknakis Georgios
Soupiona Ourania
author_sort Mylonaki Maria
title Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)
title_short Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)
title_full Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)
title_fullStr Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)
title_full_unstemmed Aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over Athens, Greece (2007-2016)
title_sort aerosol optical properties variability during biomass burning events observed by the eole-aias depolarization lidars over athens, greece (2007-2016)
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2018-01-01
description The EOLE multi-wavelength aerosol Ramandepolarization lidar, and the AIAS depolarization lidar, in synergy with a sun photometer (CIMEL), were used, in the period 2007-2016, to provide the vertical profiles of the aerosol optical properties over Athens, Greece. More than 30 biomass burning events (fresh and aged smoke particles) were observed, with smoke layers between 1.5 up to 4-5 km height, while their duration ranged from 1-3 days. Lidar ratio (LR) values ranged from 40-105 sr (at 355 nm) and from 40-100 sr (at 532 nm), while the linear particle depolarization ratio (LPDR) at both 355 and 532 nm, remained <7%. The extinction-related Ångström exponent (AEa) at 355 nm/532 nm) ranged from 0.3 to 2.1. Additionally, a case of a near-range transport of biomass burning aerosols arriving over Athens up to 4 km height, between 27 and 28 June 2016, was studied. For this case, we found LRs of the order of 70±5 sr (355 nm) and 65±15 sr (532 nm) and AEa(355 nm/532 nm) around 1.
url https://doi.org/10.1051/epjconf/201817605022
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