首页> 外文期刊>Aerosol and Air Quality Research >Monitoring and Dispersion Modeling of Polybrominated Diphenyl Ethers (PBDEs) in the Ambient Air of Two Municipal Solid Waste Incinerators and a Coal-fired Power Plant
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Monitoring and Dispersion Modeling of Polybrominated Diphenyl Ethers (PBDEs) in the Ambient Air of Two Municipal Solid Waste Incinerators and a Coal-fired Power Plant

机译:两个城市固体废物焚化炉和一个燃煤发电厂的环境空气中多溴二苯醚(PBDEs)的监测和扩散模型

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The concentration of polybrominated diphenyl ethers (PBDEs) in the ambient air of two municipal solid waste incinerators (MSWIs) and one coal-fired power plant (TPP) were determined. Along with the sites mentioned above, eight ambient air samples were collected. Cluster analysis was carried out to determine the relationship of PBDE characteristics between each site. Finally, PBDE dispersion modeling in the atmosphere was applied by using ISCST3 (Industrial Source Complex Short Term 3) to assess the impact of the above two municipal solid waste incinerators and one coal-fired power plant on the ambient air. The total-PBDE concentrations in the ambient air were between 24.9 and 139 pg/Nm3, averaging 59.8 pg/Nm3 (n = 16). The BDE-209, BDE-47 and BDE-207 were the most predominant three among all 30 PBDE congeners, which contributed more than 58%, 9%, and 4% of total-PBDE mass to the ambient air, respectively. The results of cluster analysis indicated that no direct correlations existed among the emission sources (MSWI-A, MSWI-B, TPP) and the receptors (sampling sites). From the results of dispersion modeling, the annual total PBDE concentration in ambient air contributed by the MSWI-A, MSWI-B, TPP together were found to be 0.0259% ± 0.0208%. Hence, the results of both cluster analysis and dispersion modeling showed that MWSI-A, MSWI-B, and TPP were definitely not the major contributors of PBDEs to the ambient air environment. The ashes collected from the air pollution control devices of both the MSWIs and the TPP are probably a more important environmental issue and therefore should be paid more attention to.
机译:确定了两个城市固体废物焚化炉(MSWI)和一个燃煤电厂(TPP)在环境空气中多溴二苯醚(PBDEs)的浓度。除上述地点外,还收集了八个环境空气样本。进行聚类分析以确定每个位点之间PBDE特性的关系。最后,通过使用ISCST3(工业源综合设施短期3)在大气中进行PBDE扩散建模,以评估上述两个城市固体废物焚烧炉和一个燃煤电厂对环境空气的影响。环境空气中的多溴二苯醚总浓度在24.9至139 pg / Nm3之间,平均为59.8 pg / Nm3(n = 16)。在所有30种多溴二苯醚同系物中,BDE-209,BDE-47和BDE-207是最主要的三种,分别占环境空气中多溴二苯醚总质量的58%,9%和4%。聚类分析的结果表明,排放源(MSWI-A,MSWI-B,TPP)和受体(采样位点)之间不存在直接相关性。从分散模型的结果来看,由MSWI-A,MSWI-B,TPP共同贡献的环境空气中的年总PBDE浓度为0.0259%±0.0208%。因此,聚类分析和扩散模型的结果都表明,MWSI-A,MSWI-B和TPP绝对不是多溴二苯醚对周围空气环境的主要贡献者。从MSWI和TPP的空气污染控制装置收集的灰烬可能是一个更重要的环境问题,因此应引起更多重视。

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