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Concentrations in air of organobromine, organochlorine and organophosphate flame retardants in Toronto, Canada

机译:加拿大多伦多的空气中有机溴,有机氯和有机磷酸盐阻燃剂的浓度

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摘要

Concentrations of organobromine (BFRs), organochlorine (CFRs) and organophosphate esters flame retardants and plasticizers (PFRs) in air were monitored for over one year at an urban site in Toronto, Canada during 2010-2011. The mean value for polybrominated diphenyl ethers (BDEs) (gas + particle phase) was 38 pg/m~3 with BDE-47 and BDE-99 as the dominant congeners. The mean concentrations in air for ∑non-BDE (BFRs and CFRs),was 9.6 pg/m~3 -about four times lower than the BDEs. The brominated FRs: TBP-AE, BTBPE, EH-TBB, BEH-TEBP and the chlorinated syn- and anti-DP were detected frequently, ranging from 87% to 96%. Highest concentrations in air among all flame retardant classes were observed for the Σ-PFRs. The yearly mean concentration in air for ΣPFRs was 2643 pg/m~3 with detection frequency higher than 80%. Except for TBP-AE and b- DBE-DBCH, non-BDEs (BFRs, CFRs and PFRs) were mainly associated with the particle phase. BDE concentrations in air were positively correlated with temperature indicating that volatilization from local sources was an important factor controlling levels in air. This correlation did not hold for most BFRs, CFRs and PFRs which were mainly on particles. For these compounds, air concentrations in Toronto are likely related to emissions from point sources and advective inputs. This study highlights the importance of urban air monitoring for FRs. Urban air can be considered a sentinel for detecting changes in the use and application of FRs in commercial products.
机译:在2010-2011年期间,对加拿大多伦多市区的空气中有机溴(BFRs),有机氯(CFRs)和有机磷酸酯阻燃剂和增塑剂(PFRs)的浓度进行了一年以上的监测。多溴二苯醚(气相+颗粒相)的平均值为38 pg / m〜3,其中BDE-47和BDE-99为主要同源物。 ∑non-BDE(BFR和CFR)在空气中的平均浓度为9.6 pg / m〜3-大约是BDE的四倍。经常检测到溴化FR:TBP-AE,BTBPE,EH-TBB,BEH-TEBP和氯化的顺式和反式DP,范围从87%到96%。在所有阻燃剂类别中,对于Σ-PFR,在空气中的浓度最高。 ΣPFRs在空气中的年平均浓度为2643 pg / m〜3,检测频率高于80%。除了TBP-AE和b-DBE-DBCH,非BDE(BFR,CFR和PFR)主要与颗粒相有关。空气中BDE的浓度与温度呈正相关,表明本地来源的挥发是控制空气中含量的重要因素。对于大多数主要在颗粒上的BFR,CFR和PFR,这种相关性不成立。对于这些化合物,多伦多的空气浓度可能与点源和对流输入的排放有关。这项研究强调了城市空气监测对于阻燃剂的重要性。城市空气可视为检测商业产品中阻燃剂使用和应用变化的标记。

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  • 来源
    《Atmospheric environment》 |2014年第12期|140-147|共8页
  • 作者单位

    Air Quality Processes Research Section, Environment Canada, 4905 Dufferin Street, Toronto, ON, Canada M3H 5T4;

    Air Quality Processes Research Section, Environment Canada, 4905 Dufferin Street, Toronto, ON, Canada M3H 5T4,Swedish University of Agricultural Sciences (SLU), Department of Aquatic Sciences and Assessment, SE-750 07 Uppsala, Sweden;

    Air Quality Processes Research Section, Environment Canada, 6248 Eighth Line, Egbert, ON, Canada;

    Air Quality Processes Research Section, Environment Canada, 4905 Dufferin Street, Toronto, ON, Canada M3H 5T4;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flame retardants; Air concentrations; Organobromine flame retardants; Organophosphate; NBFRs; BFRs; OPFRs;

    机译:阻燃剂;空气浓度;有机溴阻燃剂;有机磷;NBFR;BFR;OPFRs;

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