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Evaluation of black carbon in fine atmospheric particulate matter on various filter types by multi-wavelength light absorption technique

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2021
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Authors
Radenković, Mirjana
Topalović, Dušan
Trtić-Petrović, Tatjana M.
Tasić, Viša
Stanković, Srboljub
Stanić, Vojislav
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Abstract
Besides the evident harmful impact to human health, black carbon (BC) is considered as second important contributor to climate change due to its sunlight absorption and warming effects. It is a major component of fine atmospheric particulate matter emitted during the incomplete combustion of fossil fuels and biomass burning emissions from both natural and anthropogenic sources. Atmospheric carbon was recognized in forms of soot, black carbon, elemental carbon, inorganic carbon, organic carbon, brown carbon, etc, depending on the origin and absorption characteristics. Measurement methodologies for BC analysis in aerosol samples are mostly based on optical and thermal properties of carbon species. Here are presented results of the application of the optical analytical technique which relies on the multi-wavelenght light attenuation by black carbon component of fine particulate matter deposited on filter media. For that purpose, standard polytetrafluoroethylene (PTFE), quartz and carbon n...anotube filters with different qualitative features and pore diameters were exposed to fine aerosol fraction at urban background monitoring site in heating and non heating seasons, using low-volume air samplers with 2.3 m3/h air flow. A multi wavelength absorption black carbon instrument (MABI) with 405 nm, 465 nm, 525 nm, 639 nm, 870 nm, 940 nm and 1050 nm LEDs was used for blank and exposed filters analysis and black carbon evaluation. Differences in obtained BC values are discussed in relation to various absorption potential of different filter media, taking into account absorption coefficients dependence on the wavelength and density. Main advantage of this method is simplicity and complementarity with nondestructive nuclear analytical techniques (EDXRF, PIXE) for elemental analysis of fine aerosol fraction on specific filter media. Differentiation between black carbon coming from fossil fuels combustion and from biomass burning sources would be additional information valuable for source apportionment analysis using positive matrix factorization and reliable discussion of air pollution observed at selected receptor site.

Source:
RAD 2021 : 9th International Conference on Radiation in Various Fields of Research : book of abstracts; June 14-18; Herceg Novi, Montenegro, 2021, 64-
Publisher:
  • Niš, Serbia : RAD Centre
Note:
  • IX International Conference on Radiation in Various Fields of Research : RAD 2021 : book of abstracts; June 14-18, 2021; Herceg Novi, Montenegro

DOI: 10.21175/rad.abstr.book.2021.11.6

ISBN: 978-86-901150-2-0

[ Google Scholar ]
URI
https://vinar.vin.bg.ac.rs/handle/123456789/11123
Collections
  • 010 - Laboratorija za fiziku
  • 100 - Laboratorija za zaštitu od zračenja i zaštitu životne sredine
  • Radovi istraživača
Institution/Community
Vinča
TY  - CONF
AU  - Radenković, Mirjana
AU  - Topalović, Dušan
AU  - Trtić-Petrović, Tatjana M.
AU  - Tasić, Viša
AU  - Stanković, Srboljub
AU  - Stanić, Vojislav
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/11123
AB  - Besides the evident harmful impact to human health, black carbon (BC) is considered as second important contributor to climate change due to its sunlight absorption and warming effects. It is a major component of fine atmospheric particulate matter emitted during the incomplete combustion of fossil fuels and biomass burning emissions from both natural and anthropogenic sources. Atmospheric carbon was recognized in forms of soot, black carbon, elemental carbon, inorganic carbon, organic carbon, brown carbon, etc, depending on the origin and absorption characteristics. Measurement methodologies for BC analysis in aerosol samples are mostly based on optical and thermal properties of carbon species. Here are presented results of the application of the optical analytical technique which relies on the multi-wavelenght light attenuation by black carbon component of fine particulate matter deposited on filter media. For that purpose, standard polytetrafluoroethylene (PTFE), quartz and carbon nanotube filters with different qualitative features and pore diameters were exposed to fine aerosol fraction at urban background monitoring site in heating and non heating seasons, using low-volume air samplers with 2.3 m3/h air flow. A multi wavelength absorption black carbon instrument (MABI) with 405 nm, 465 nm, 525 nm, 639 nm, 870 nm, 940 nm and 1050 nm LEDs was used for blank and exposed filters analysis and black carbon evaluation. Differences in obtained BC values are discussed in relation to various absorption potential of different filter media, taking into account absorption coefficients dependence on the wavelength and density. Main advantage of this method is simplicity and complementarity with nondestructive nuclear analytical techniques (EDXRF, PIXE) for elemental analysis of fine aerosol fraction on specific filter media. Differentiation between black carbon coming from fossil fuels combustion and from biomass burning sources would be additional information valuable for source apportionment analysis using positive matrix factorization and reliable discussion of air pollution observed at selected receptor site.
PB  - Niš, Serbia : RAD Centre
C3  - RAD 2021 : 9th International Conference on Radiation in Various Fields of Research : book of abstracts; June 14-18; Herceg Novi, Montenegro
T1  - Evaluation of black carbon in fine atmospheric particulate matter on various filter types by multi-wavelength light absorption technique
SP  - 64
DO  - 10.21175/rad.abstr.book.2021.11.6
ER  - 
@conference{
author = "Radenković, Mirjana and Topalović, Dušan and Trtić-Petrović, Tatjana M. and Tasić, Viša and Stanković, Srboljub and Stanić, Vojislav",
year = "2021",
abstract = "Besides the evident harmful impact to human health, black carbon (BC) is considered as second important contributor to climate change due to its sunlight absorption and warming effects. It is a major component of fine atmospheric particulate matter emitted during the incomplete combustion of fossil fuels and biomass burning emissions from both natural and anthropogenic sources. Atmospheric carbon was recognized in forms of soot, black carbon, elemental carbon, inorganic carbon, organic carbon, brown carbon, etc, depending on the origin and absorption characteristics. Measurement methodologies for BC analysis in aerosol samples are mostly based on optical and thermal properties of carbon species. Here are presented results of the application of the optical analytical technique which relies on the multi-wavelenght light attenuation by black carbon component of fine particulate matter deposited on filter media. For that purpose, standard polytetrafluoroethylene (PTFE), quartz and carbon nanotube filters with different qualitative features and pore diameters were exposed to fine aerosol fraction at urban background monitoring site in heating and non heating seasons, using low-volume air samplers with 2.3 m3/h air flow. A multi wavelength absorption black carbon instrument (MABI) with 405 nm, 465 nm, 525 nm, 639 nm, 870 nm, 940 nm and 1050 nm LEDs was used for blank and exposed filters analysis and black carbon evaluation. Differences in obtained BC values are discussed in relation to various absorption potential of different filter media, taking into account absorption coefficients dependence on the wavelength and density. Main advantage of this method is simplicity and complementarity with nondestructive nuclear analytical techniques (EDXRF, PIXE) for elemental analysis of fine aerosol fraction on specific filter media. Differentiation between black carbon coming from fossil fuels combustion and from biomass burning sources would be additional information valuable for source apportionment analysis using positive matrix factorization and reliable discussion of air pollution observed at selected receptor site.",
publisher = "Niš, Serbia : RAD Centre",
journal = "RAD 2021 : 9th International Conference on Radiation in Various Fields of Research : book of abstracts; June 14-18; Herceg Novi, Montenegro",
title = "Evaluation of black carbon in fine atmospheric particulate matter on various filter types by multi-wavelength light absorption technique",
pages = "64",
doi = "10.21175/rad.abstr.book.2021.11.6"
}
Radenković, M., Topalović, D., Trtić-Petrović, T. M., Tasić, V., Stanković, S.,& Stanić, V.. (2021). Evaluation of black carbon in fine atmospheric particulate matter on various filter types by multi-wavelength light absorption technique. in RAD 2021 : 9th International Conference on Radiation in Various Fields of Research : book of abstracts; June 14-18; Herceg Novi, Montenegro
Niš, Serbia : RAD Centre., 64.
https://doi.org/10.21175/rad.abstr.book.2021.11.6
Radenković M, Topalović D, Trtić-Petrović TM, Tasić V, Stanković S, Stanić V. Evaluation of black carbon in fine atmospheric particulate matter on various filter types by multi-wavelength light absorption technique. in RAD 2021 : 9th International Conference on Radiation in Various Fields of Research : book of abstracts; June 14-18; Herceg Novi, Montenegro. 2021;:64.
doi:10.21175/rad.abstr.book.2021.11.6 .
Radenković, Mirjana, Topalović, Dušan, Trtić-Petrović, Tatjana M., Tasić, Viša, Stanković, Srboljub, Stanić, Vojislav, "Evaluation of black carbon in fine atmospheric particulate matter on various filter types by multi-wavelength light absorption technique" in RAD 2021 : 9th International Conference on Radiation in Various Fields of Research : book of abstracts; June 14-18; Herceg Novi, Montenegro (2021):64,
https://doi.org/10.21175/rad.abstr.book.2021.11.6 . .

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