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Title:Vertical profiling of fresh biomass burning aerosol optical properties over the Greek urban city of Ioannina, during the PANACEA winter campaign
Authors:ID Papanikolaou, Christina-Anna (Author)
ID Papayannis, Alexandros (Author)
ID Mylonaki, M. (Author)
ID Foskinis, Romanos (Author)
ID Kokkalis, Panagiotis (Author)
ID Liakakou, Eleni (Author)
ID Stavroulas, Iasonas (Author)
ID Soupiona, O. (Author)
ID Hatzianastassiou, Nikolaos (Author)
ID Gavrouzou, Maria (Author), et al.
Files:URL https://www.mdpi.com/2073-4433/13/1/94
 
.pdf atmosphere-13-00094-1.pdf (6,36 MB)
MD5: BEA6DEA63713835CCCAADB2EE19D60FE
 
URL https://www.mdpi.com/2073-4433/13/1/94/pdf
 
Language:English
Work type:Unknown
Typology:1.01 - Original Scientific Article
Organization:UNG - University of Nova Gorica
Abstract:Vertical profiling of aerosol particles was performed during the PANhellenic infrastructure for Atmospheric Composition and climatE chAnge (PANACEA) winter campaign (10 January 2020–7 February 2020) over the city of Ioannina, Greece (39.65° N, 20.85° E, 500 m a.s.l.). The middle-sized city of Ioannina suffers from wintertime air pollution episodes due to biomass burning (BB) domestic heating activities. The lidar technique was applied during the PANACEA winter campaign on Ioannina city, to fill the gap of knowledge of the spatio-temporal evolution of the vertical mixing of the particles occurring during these winter-time air pollution episodes. During this campaign the mobile single-wavelength (532 nm) depolarization Aerosol lIdAr System (AIAS) was used to measure the spatio-temporal evolution of the aerosols’ vertical profiles within the Planetary Boundary Layer (PBL) and the lower free troposphere (LFT; up to 4 km height a.s.l.). AIAS performed almost continuous lidar measurements from morning to late evening hours (typically from 07:00 to 19:00 UTC), under cloud-free conditions, to provide the vertical profiles of the aerosol backscatter coefficient (baer) and the particle linear depolarization ratio (PLDR), both at 532 nm. In this study we emphasized on the vertical profiling of very fresh (~hours) biomass burning (BB) particles originating from local domestic heating activities in the area. In total, 33 out of 34 aerosol layers in the lower free troposphere were characterized as fresh biomass burning ones of local origin, showing a mean particle linear depolarization value of 0.04 ± 0.02 with a range of 0.01 to 0.09 (532 nm) in a height region 1.21–2.23 km a.s.l. To corroborate our findings, we used in situ data, particulate matter (PM) concentrations (PM2.5) from a particulate sensor located close to our station, and the total black carbon (BC) concentrations along with the respective contribution of the fossil fuel (BCff) and biomass/wood burning (BCwb) from the Aethalometer. The PM2.5 mass concentrations ranged from 5.6 to 175.7 μg/m3, while the wood burning emissions from residential heating were increasing during the evening hours, with decreasing temperatures. The BCwb concentrations ranged from 0.5 to 17.5 μg/m3, with an extremely high mean contribution of BCwb equal to 85.4%, which in some cases during night-time reached up to 100% during the studied period.
Keywords:lidar, depolarization ratio, fresh biomass burning aerosols, domestic heating, black carbon, PM2.5
Publication status:Published
Publication version:Version of Record
Publication date:01.01.2022
Year of publishing:2022
Number of pages:str. 1-23
Numbering:Vol. 13, issue 1, [article no.] 94
PID:20.500.12556/RUNG-9034 New window
COBISS.SI-ID:195016963 New window
UDC:53
ISSN on article:2073-4433
eISSN:2073-4433
DOI:10.3390/atmos13010094 New window
NUK URN:URN:SI:UNG:REP:UJIOIF22
Publication date in RUNG:10.05.2024
Views:804
Downloads:5
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Record is a part of a journal

Title:Atmosphere
Shortened title:Atmosphere
Publisher:MDPI AG
ISSN:2073-4433
COBISS.SI-ID:522992153 New window

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.
Licensing start date:07.01.2022

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