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Using long-term air monitoring of semi-volatile organic compounds to evaluate the uncertainty in polyurethane-disk passive sampler-derived air concentrations

机译:使用半挥发性有机化合物的长期空气监测来评估聚氨酯圆盘被动采样器衍生的空气浓度的不确定性

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摘要

Much effort has been made to standardise sampling procedures, laboratory analysis, data analysis, etc. for semi volatile organic contaminants (SVOCs). Yet there are some unresolved issues in regards to comparing measurements from one of the most commonly used passive samplers (PAS), the polyurethane foam (PUF) disk PAS (PUF-PAS), between monitoring networks or different studies. One such issue is that there is no universal means to derive a sampling rate (R-s) or to calculate air concentrations (Cab(air)) from PUF-PAS measurements for SVOCs. C-air was calculated from PUF-PAS measurements from a long-term monitoring program at a site in central Europe applying current understanding of passive sampling theory coupled with a consideration for the sampling of particle associated compounds. Cair were assessed against concurrent active air sampler (AAS) measurements. Use of "site-based/sampler-specific" variables: R-s, calculated using a site calibration, provided similar results for most gas-phase SVOCs to air concentrations derived using "default" values (commonly accepted R-s). Individual monthly PUF-PAS-derived air concentrations for the majority of the target compounds were significantly different (Wilcoxon signed-rank (WSR) test; p < 0.05) to AAS regardless of the input values (site/sampler based or default) used to calculate them. However, annual average PUF-PAS-derived air concentrations were within the same order of magnitude as AAS measurements except for the particle-phase polycyclic aromatic hydrocarbons (PAHs). Underestimation of PUF-derived air concentrations for particle-phase PAHs was attributed to a potential overestimation of the particle infiltration into the PUF-PAS chamber and underestimation of the particle bound fraction of PAHs. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:为了使半挥发性有机污染物(SVOC)的采样程序,实验室分析,数据分析等标准化,已经做了很多努力。然而,在监控网络或不同研究之间比较来自最常用的被动采样器(PAS)之一,聚氨酯泡沫(PUF)盘PAS(PUF-PAS)的测量值时,仍存在一些未解决的问题。一个这样的问题是,没有通用的方法可以从SVOC的PUF-PAS测量中得出采样率(R-s)或计算空气浓度(Cab(空气))。 C-air是根据欧洲中部某站点的长期监测计划的PUF-PAS测量结果计算得出的,其中应用了对无源采样理论的最新理解以及对与颗粒相关的化合物进行采样的注意事项。根据同时进行的主动空气采样器(AAS)测量来评估Cair。使用“基于站点/特定于采样器的”变量:使用站点校准计算得出的R-s,对于大多数气相SVOC,其结果与使用“默认”值(公认的R-s)得出的空气浓度相似。无论使用哪种输入值(基于站点/采样器或默认值),大多数目标化合物的每月个人PUF-PAS衍生空气浓度与AAS均存在显着差异(Wilcoxon符号秩(WSR)测试; p <0.05)。计算它们。但是,除颗粒相多环芳烃(PAHs)之外,年平均PUF-PAS衍生的空气浓度与AAS测量值处于同一数量级。对于颗粒相PAHs,PUF衍生空气浓度的低估归因于对PUF-PAS室中颗粒渗透的潜在高估,以及PAHs的颗粒结合分数的低估。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2017年第ptab期|1100-1111|共12页
  • 作者单位

    Masaryk Univ, RECETOX Res Ctr Tox Cpds Environm, Kamenice 753-5, Brno 62500, Czech Republic;

    Norwegian Inst Air Res NILU, Inst Veien 18,POB 100, NO-2027 Kjeller, Norway;

    Masaryk Univ, RECETOX Res Ctr Tox Cpds Environm, Kamenice 753-5, Brno 62500, Czech Republic;

    Environm & Climate Change Canada, Air Qual Proc Res Sect, 4905 Dufferin St, Toronto, ON M3H 5T4, Canada;

    Masaryk Univ, RECETOX Res Ctr Tox Cpds Environm, Kamenice 753-5, Brno 62500, Czech Republic;

    Masaryk Univ, RECETOX Res Ctr Tox Cpds Environm, Kamenice 753-5, Brno 62500, Czech Republic;

    Masaryk Univ, RECETOX Res Ctr Tox Cpds Environm, Kamenice 753-5, Brno 62500, Czech Republic;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Passive sampling; Air monitoring; Data interpretation; Data comparability; Semi-volatile organic compounds (SVOCs);

    机译:被动采样;空气监测;数据解释;数据可比性;半挥发性有机化合物(SVOC);

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