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Influence of Sampler Configuration on the Uptake Kinetics of a Passive Air Sampler

机译:采样器配置对被动式空气采样器吸收动力学的影响

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摘要

Passive air samplers (PAS) are simple and cost-effective tools to monitor semivolatile organic compounds in air. Chemical uptake occurs by molecular diffusion from ambient air to a passive sampling medium (PSM). Previous calibration studies indicate that even for the same type of PAS, passive air sampling rates (R, m~3air./d) can be highly variable due to the influence of a number of factors. Earlier studies mainly focused on factors (e.g., wind speed and temperature) influencing R via the kinetic resistance posed by the air boundary layer surrounding the PSM because that layer was deemed to be the main factor determining the uptake kinetics. Whereas recent calibration studies suggest that the PAS configuration can influence A, so far few studies have specifically focused on this factor. In this study, with the objective to understand the effect of PAS configurations on R, we applied a gravimetrical approach to study the kinetics of water vapor uptake from indoor air by silica gel placed inside cylindrical PAS of various configurations. We also conducted an indoor calibration for pohrchlorinated biphenyls on the same type of PAS using XAD-resin as the PSM. R was found to be proportional to the interfacial transfer area of die PSM but not the amount of the PSM because chemicals mainly accumulated in the outer layer of the PSM during the deployment time of the PAS. The sampler housing and the PSM can introduce kinetic resistance to chemical uptake as indicated by changes in R caused by positioning the PSM at different distances from the opening of the sampler housing and by using PSM of different diameters. Information gained from this study is useful for optimizing the PAS design with the objective to reduce the material and shipping costs without sacrificing sampling efficiency.
机译:被动空气采样器(PAS)是监视空气中半挥发性有机化合物的简单且经济高效的工具。化学吸收是通过分子从环境空气扩散到被动采样介质(PSM)发生的。先前的校准研究表明,即使对于相同类型的PAS,由于多种因素的影响,被动空气采样率(R,m〜3air。/ d)仍可能变化很大。较早的研究主要集中在通过PSM周围空气边界层构成的动阻力而影响R的因素(例如风速和温度)上,因为该层被认为是决定吸收动力学的主要因素。尽管最近的校准研究表明PAS构型可以影响A,但到目前为止,很少有研究专门针对此因素。在这项研究中,为了了解PAS配置对R的影响,我们采用了一种重量分析方法来研究放置在各种配置的圆柱形PAS中的硅胶从室内空气中吸收水蒸气的动力学。我们还使用XAD树脂作为PSM在相同类型的PAS上对室内的氯化氯联苯进行了室内校准。发现R与PSM的界面转移面积成比例,但与PSM的数量不成比例,因为化学物质主要在PAS的部署时间内积聚在PSM的外层中。采样器外壳和PSM可以对化学吸收引入动力学阻力,这是由于R的变化所引起的,该变化是通过将PSM放置在距采样器外壳的开口不同距离处以及使用不同直径的PSM引起的。从这项研究中获得的信息对于优化PAS设计很有用,其目的是在不牺牲采样效率的前提下减少材料和运输成本。

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  • 来源
    《Environmental Science & Technology》 |2012年第1期|p.397-403|共7页
  • 作者单位

    Department of Chemistry, University of Toronto Scarborough, Toronto, Ontario MIC 1A4, Canada Department of Physical and Environmental Sciences, University of Toronto Scarborough, Toronto, Ontario MIC 1A4, Canada;

    rnDepartment of Physical and Environmental Sciences, University of Toronto Scarborough, Toronto, Ontario MIC 1A4, Canada;

    rnDepartment of Chemistry, University of Toronto Scarborough, Toronto, Ontario MIC 1A4, Canada Department of Physical and Environmental Sciences, University of Toronto Scarborough, Toronto, Ontario MIC 1A4, Canada;

    rnDepartment of Chemistry, University of Toronto Scarborough, Toronto, Ontario MIC 1A4, Canada Department of Physical and Environmental Sciences, University of Toronto Scarborough, Toronto, Ontario MIC 1A4, Canada;

  • 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
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