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Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study

In order to assess polybrominated diphenyl ether (PBDE) atmospheric pollution levels in Xi’an, air samples were collected using a large flow air sampler from July 2008 to April 2013. In total, 134 samples were collected and 12 PBDE congeners were detected. Total PBDE concentrations (both gaseous and...

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Autores principales: Ye, Lei, Zhang, Chengzhong, Han, Deming, Ji, Zheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6388259/
https://www.ncbi.nlm.nih.gov/pubmed/30759827
http://dx.doi.org/10.3390/ijerph16030520
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author Ye, Lei
Zhang, Chengzhong
Han, Deming
Ji, Zheng
author_facet Ye, Lei
Zhang, Chengzhong
Han, Deming
Ji, Zheng
author_sort Ye, Lei
collection PubMed
description In order to assess polybrominated diphenyl ether (PBDE) atmospheric pollution levels in Xi’an, air samples were collected using a large flow air sampler from July 2008 to April 2013. In total, 134 samples were collected and 12 PBDE congeners were detected. Total PBDE concentrations (both gaseous and particulate phase) were 36.38–1054 pg/m(3), with an average of 253.2 ± 198.4 pg/m(3). BDE-209 was identified as the main PBDE component, with a corresponding concentration of 0.00–1041 pg/m(3), accounting for 89.4% of total PBDEs. Principal component analysis results showed that PBDEs in Xi’an’s atmosphere mainly originated from commercial products containing penta-BDE, octa-BDE, and deca-BDE. The relative natural logarithm for partial pressure (RP) of PBDEs (gaseous phase) was calculated using the Clausius–Clapeyron equation. The gas flow trajectories at high, middle, and low RP values were analyzed by applying the backward trajectory model. These data indicated that the difference between trajectory distribution and concentration load on trajectories was huge under different RP values. PBDE concentrations (gaseous phase) weighted trajectory showed that the central and southwestern parts of Henan Province and the northwestern area of Hubei Province exhibited the darkest colors, and the daily average concentration contribution of PBDEs to the receiving point was >9 pg/m(3), which indicates that these areas might be the main potential source areas of PBDEs in Xi’an’s atmosphere.
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spelling pubmed-63882592019-02-27 Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study Ye, Lei Zhang, Chengzhong Han, Deming Ji, Zheng Int J Environ Res Public Health Article In order to assess polybrominated diphenyl ether (PBDE) atmospheric pollution levels in Xi’an, air samples were collected using a large flow air sampler from July 2008 to April 2013. In total, 134 samples were collected and 12 PBDE congeners were detected. Total PBDE concentrations (both gaseous and particulate phase) were 36.38–1054 pg/m(3), with an average of 253.2 ± 198.4 pg/m(3). BDE-209 was identified as the main PBDE component, with a corresponding concentration of 0.00–1041 pg/m(3), accounting for 89.4% of total PBDEs. Principal component analysis results showed that PBDEs in Xi’an’s atmosphere mainly originated from commercial products containing penta-BDE, octa-BDE, and deca-BDE. The relative natural logarithm for partial pressure (RP) of PBDEs (gaseous phase) was calculated using the Clausius–Clapeyron equation. The gas flow trajectories at high, middle, and low RP values were analyzed by applying the backward trajectory model. These data indicated that the difference between trajectory distribution and concentration load on trajectories was huge under different RP values. PBDE concentrations (gaseous phase) weighted trajectory showed that the central and southwestern parts of Henan Province and the northwestern area of Hubei Province exhibited the darkest colors, and the daily average concentration contribution of PBDEs to the receiving point was >9 pg/m(3), which indicates that these areas might be the main potential source areas of PBDEs in Xi’an’s atmosphere. MDPI 2019-02-12 2019-02 /pmc/articles/PMC6388259/ /pubmed/30759827 http://dx.doi.org/10.3390/ijerph16030520 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ye, Lei
Zhang, Chengzhong
Han, Deming
Ji, Zheng
Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study
title Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study
title_full Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study
title_fullStr Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study
title_full_unstemmed Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study
title_short Characterization and Source Identification of Polybrominated Diphenyl Ethers (PBDEs) in Air in Xi’an: Based on a Five-Year Study
title_sort characterization and source identification of polybrominated diphenyl ethers (pbdes) in air in xi’an: based on a five-year study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6388259/
https://www.ncbi.nlm.nih.gov/pubmed/30759827
http://dx.doi.org/10.3390/ijerph16030520
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