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Passive sampling of PAHs and some trace organic compounds in occupational and residential air: needs, evaluation and limits

机译:职业和住宅空气中paHs和一些痕量有机化合物的被动取样:需求,评估和限制

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摘要

Human exposure to elevated levels of polycyclic aromatic hydrocarbons (PAHs) and trace organic compounds (e.g. PCB, OCP, PBDE) can be related to negative health effects. This raises demands of exposure measurements to be performed. Passive air samplers (PAS) are simple and cheap sampling options that may be useful tools for exposure screening of large populations. They can also enable frequent monitoring. The aim of this thesis was to evaluate and increase the understanding of PAS methods to sample and monitor PAHs and some trace organic compounds in occupational and residential air.A polyurethane foam (PUF) based PAS was considered having the best potential and was chosen for the evaluation. Two designs of this PUF-PAS were evaluated: one for stationary sampling shaped as a disk and one for personal sampling shaped as a cylinder (“mini-PUF”).The results presented show that PUF-PAS disks and mini-PUFs provide detectable levels for most of the studied compounds under typical occupational and residential air concentrations. They also showed potential to detect spatial differences in concentrations between and within sampling sites as well as inside and outside homes. The novel use of the mini-PUF was successful both as stationary and personal sampler. Moreover, the precision of gas phase PAHs in replicates of PUF-PAS disks and mini-PUFs were comparable to precision for active samplers while particle-associated PAHs showed more variable results. Results from personally deployed mini-PUFs were significantly correlated to personal active samplers for the studied compounds and the accuracy was high for most compounds. Sampling rates (RS) for 16 individual PAHs ranged from 1 to 10 m3 day-1 (0.7-7 L min-1) in PUF-PAS disks, from 0.4 to 3.3 m3 day-1 (0.3-2.3 L min-1) in mini-PUFs deployed for two weeks as well as 8 h. No significant differences in RS were found for PAHs in the gas phase and PAHs associated to particles. The RS was higher for the mini-PUF compared to the PUF-PAS disk when correcting for their surface areas indicating a more efficient uptake in the mini-PUF design. Somewhat higher RS was also found for gas phase PAHs for the 8 h exposure compared to two weeks exposure.In conclusion, this thesis demonstrates that PUF-PAS disks can be a useful tool for screening of PAH concentrations in occupational environments. The mini-PUF has a good potential to be used as a personal sampler for PAHs in occupational environments but requires further validation.
机译:人体暴露于多环芳烃(PAHs)和痕量有机化合物(例如PCB,OCP,PBDE)含量升高的情况下,可能对健康产生负面影响。这提出了要执行的曝光测量的要求。被动式空气采样器(PAS)是简单且便宜的采样选项,对于大量人群的暴露筛查可能是有用的工具。它们还可以启用频繁监视。本文的目的是评估和增加对PAS方法进行采样和监测的PAHs和一些职业和居民空气中的痕量有机化合物的认识。基于聚氨酯泡沫(PUF)的PAS被认为具有最佳潜力,因此被选择用于评估。对该PUF-PAS的两种设计进行了评估:一种设计为圆盘形的固定采样,另一种设计为圆柱形的个人采样(“ mini-PUF”)。给出的结果表明,PUF-PAS盘和微型PUF在典型的职业和居民空气浓度下,为大多数研究化合物提供了可检测的水平。他们还显示出检测抽样地点之间和内部以及房屋内部和外部空间浓度差异的潜力。 mini-PUF的新颖用途在固定式采样器和个人采样器中均获得成功。此外,PUF-PAS盘和微型PUF的复制品中气相PAH的精度可与有源采样器的精度相媲美,而与颗粒相关的PAH则显示出更多的可变结果。对于所研究的化合物,个人部署的微型PUF的结果与个人活性采样器显着相关,大多数化合物的准确性很高。在PUF-PAS磁盘中,对16个单个PAH的采样率(RS)为1至10 m3 day-1(0.7-7 L min-1),从0.4至3.3 m3 day-1(0.3-2.3 L min-1)在微型PUF中部署了两个星期以及8小时。对于气相中的PAH和与颗粒相关的PAH,在RS中未发现显着差异。校正PU-PAS磁盘的表面积时,与PUF-PAS磁盘相比,其RS值更高,这表明mini-PUF设计中的吸收效率更高。与两周暴露相比,气相PAH在8 h暴露中也发现了更高的RS。总而言之,本论文证明了PUF-PAS盘片可以作为在职业环境中筛选PAH浓度的有用工具。迷你PUF在用作职业环境中PAH的个人采样器方面具有很大的潜力,但需要进一步验证。

著录项

  • 作者

    Bohlin Pernilla;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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