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Characteristics of halogenated flame retardants in the atmosphere of Dalian, China

机译:中国大连市大气中卤代阻燃剂的特性

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Samples of gas and fine particulate matter (PM2.5) were collected in Dalian, China, a typical coastal city, to determine the concentrations, seasonal variations, influential factors, sources, and gas-PM2.5 partitioning of polybrominated Biphenyl ethers (PBDEs), novel brominated flame retardants (NBFRs), and dechlorane plus (DPs) in the ambient air. Annual average concentrations of Sigma 7PBDEs, BDE209, Sigma(6)NBFRs, and DPs were 4.40 +/- 2.93, 1460 +/- 2500, 7.81 +/- 6.85, and 0.15 +/- 0.14 pg/m(3) for the gas phase, and 2.68 +/- 1.64, 4291 +/- 4306, 13.6 +/- 23.4, and 0.31 +/- 0.22 pg/m(3) for the fine particle phase, respectively. BDE209 was the dominant congener, followed by HBB and BEH-TEBP, and seasonal variations in air concentrations were apparent for BFRs, especially those in the gas phase. Moreover, meteorological parameters and criteria air pollutants revealed significant positive correlations between temperature and less-brominated BFRs in the gas phase, and between PM2.5 and highly-brominated BFRs in the particle phase. This suggests that the presence of these compounds in ambient air may largely result from combustion-related processes. Furthermore, an analysis of the gas-PM2.5 partitioning of BFRs and DPs suggested that BFRs and DPs mostly attained equilibrium, except for some NBFRs. Due to the ban of commercial penta-, octa-, and deca-BDEs by the Stockholm Convention, emissions from historical use and combustion are becoming the important sources of PBDEs in China.
机译:在典型的沿海城市大连,收集了气体和细颗粒物(PM2.5)的样品,以确定多溴联苯醚(PBDEs)的浓度,季节变化,影响因素,来源和气体-PM2.5分配。 ),新型溴化阻燃剂(NBFR)和环境空气中的十氯烷(DP)。 Sigma 7PBDEs,BDE209,Sigma(6)NBFRs和DPs的年平均浓度分别为4.40 +/- 2.93、1460 +/- 2500、7.81 +/- 6.85和0.15 +/- 0.14 pg / m(3)。气相,分别为2.68 +/- 1.64、4291 +/- 4306、13.6 +/- 23.4和0.31 +/- 0.22 pg / m(3)。 BDE209是最主要的同源物,其次是HBB和BEH-TEBP,BFR的空气浓度季节性变化很明显,尤其是在气相中。此外,气象参数和标准空气污染物显示,气相中的温度与溴化程度较低的溴化阻燃剂之间以及颗粒相中的PM2.5与溴化程度较高的溴化阻燃剂之间存在显着正相关。这表明环境空气中这些化合物的存在可能很大程度上是由燃烧相关的过程引起的。此外,对BFR和DP的气体-PM2.5分配的分析表明,除某些NBFR外,BFR和DP大多达到了平衡。由于《斯德哥尔摩公约》禁止使用商用五溴,八溴和十溴二苯醚,历史使用和燃烧产生的排放正成为中国多溴二苯醚的重要来源。

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