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Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols

A single-particle mass spectrometer (SPMS) with laser ionization was constructed to determine the chemical composition of single particles in real time. The technique was evaluated using various polystyrene latex particles with different sizes (125 nm, 300 nm, 700 nm, and 1000 nm); NaCl, KCl, MgCO(3...

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Autores principales: Cho, Hee-joo, Kim, Joonwoo, Kwak, Nohhyeon, Kwak, Heesung, Son, Taewan, Lee, Donggeun, Park, Kihong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8583169/
https://www.ncbi.nlm.nih.gov/pubmed/34770093
http://dx.doi.org/10.3390/ijerph182111580
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author Cho, Hee-joo
Kim, Joonwoo
Kwak, Nohhyeon
Kwak, Heesung
Son, Taewan
Lee, Donggeun
Park, Kihong
author_facet Cho, Hee-joo
Kim, Joonwoo
Kwak, Nohhyeon
Kwak, Heesung
Son, Taewan
Lee, Donggeun
Park, Kihong
author_sort Cho, Hee-joo
collection PubMed
description A single-particle mass spectrometer (SPMS) with laser ionization was constructed to determine the chemical composition of single particles in real time. The technique was evaluated using various polystyrene latex particles with different sizes (125 nm, 300 nm, 700 nm, and 1000 nm); NaCl, KCl, MgCO(3), CaCO(3), and Al(2)O(3) particles with different chemical compositions; an internal mixture of NaCl and KCl; and an internal mixture of NaCl, KCl, and MgCl(2) with different mixing states. The results show that the SPMS can be useful for the determination of chemical characteristics and mixing states of single particles in real time. The SPMS was then applied to obtain the chemical signatures of various combustion aerosols (diesel engine exhaust, biomass burning (rice straw), coal burning, and cooking (pork)) based on their single-particle mass spectra. Elemental carbon (EC)-rich and EC-organic carbon (OC) particles were the predominant particle types identified in diesel engine exhaust, while K-rich and EC-OC-K particles were observed among rice straw burning emissions. Only one particle type (ash-rich particles) was detected among coal burning emissions. EC-rich and EC-OC particles were observed among pork burning particles. The single-particle mass spectra of the EC or OC types of particles differed among various combustion sources. The observed chemical signatures could be useful for rapidly identifying sources of atmospheric fine particles. In addition, the detected chemical signatures of the fine particles may be used to estimate their toxicity and to better understand their effects on human health.
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spelling pubmed-85831692021-11-12 Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols Cho, Hee-joo Kim, Joonwoo Kwak, Nohhyeon Kwak, Heesung Son, Taewan Lee, Donggeun Park, Kihong Int J Environ Res Public Health Article A single-particle mass spectrometer (SPMS) with laser ionization was constructed to determine the chemical composition of single particles in real time. The technique was evaluated using various polystyrene latex particles with different sizes (125 nm, 300 nm, 700 nm, and 1000 nm); NaCl, KCl, MgCO(3), CaCO(3), and Al(2)O(3) particles with different chemical compositions; an internal mixture of NaCl and KCl; and an internal mixture of NaCl, KCl, and MgCl(2) with different mixing states. The results show that the SPMS can be useful for the determination of chemical characteristics and mixing states of single particles in real time. The SPMS was then applied to obtain the chemical signatures of various combustion aerosols (diesel engine exhaust, biomass burning (rice straw), coal burning, and cooking (pork)) based on their single-particle mass spectra. Elemental carbon (EC)-rich and EC-organic carbon (OC) particles were the predominant particle types identified in diesel engine exhaust, while K-rich and EC-OC-K particles were observed among rice straw burning emissions. Only one particle type (ash-rich particles) was detected among coal burning emissions. EC-rich and EC-OC particles were observed among pork burning particles. The single-particle mass spectra of the EC or OC types of particles differed among various combustion sources. The observed chemical signatures could be useful for rapidly identifying sources of atmospheric fine particles. In addition, the detected chemical signatures of the fine particles may be used to estimate their toxicity and to better understand their effects on human health. MDPI 2021-11-04 /pmc/articles/PMC8583169/ /pubmed/34770093 http://dx.doi.org/10.3390/ijerph182111580 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cho, Hee-joo
Kim, Joonwoo
Kwak, Nohhyeon
Kwak, Heesung
Son, Taewan
Lee, Donggeun
Park, Kihong
Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols
title Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols
title_full Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols
title_fullStr Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols
title_full_unstemmed Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols
title_short Application of Single-Particle Mass Spectrometer to Obtain Chemical Signatures of Various Combustion Aerosols
title_sort application of single-particle mass spectrometer to obtain chemical signatures of various combustion aerosols
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8583169/
https://www.ncbi.nlm.nih.gov/pubmed/34770093
http://dx.doi.org/10.3390/ijerph182111580
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