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风对被动式空气采样器化学吸收动力学的影响。

Effect of wind on the chemical uptake kinetics of a passive air sampler.

机构信息

Department of Chemistry and Department of Physical and Environmental Sciences, University of Toronto Scarborough, Toronto, Ontario M1C 1A4, Canada.

出版信息

Environ Sci Technol. 2013 Jul 16;47(14):7868-75. doi: 10.1021/es401486f. Epub 2013 Jun 26.

DOI:10.1021/es401486f
PMID:23802579
Abstract

Passive air samplers (PASs) operate in different types of environment under various wind conditions, which may affect sampling rates and thus introduce uncertainty to PAS-derived air concentrations. To quantify the effect of wind speed and angle on the uptake in cylindrical PASs using XAD-resin as the sampling medium, we measured the uptake kinetics of polychlorinated biphenyls (PCBs) in XAD and of water in silica-gel, both under quasi wind-still condition and with lab-generated wind blowing toward the PASs at various speeds and angles. Passive sampling rates (PSRs) of PCBs under laboratory generated windy conditions were approximately 3-4 times higher than under wind-still indoor conditions. The rate of water uptake by silica-gel increased with wind speed, following a logarithmic function so that PSRs are more strongly influenced at lower wind speed. PSRs of both PCBs and water varied little with wind angle, which is consistent with computational fluid dynamic simulations showing that different angles of wind incidence cause only minor variations of air velocities within the cylindrical sampler housing. Because modifications of the design of the cylindrical PAS were not successful in eliminating the wind speed dependence of PSRs at low wind levels, indoor and outdoor deployments require different sets of PSRs. The effect of wind speed and angle on the PSRs of the cylindrical PAS are much smaller than what has been reported for the double-bowl polyurethane foam PAS. PSRs of the cylindrical XAD-PAS therefore tend to vary much less between sampling sites exposed to different wind conditions.

摘要

被动空气采样器 (PAS) 在不同类型的环境中运行,并在各种风况下工作,这可能会影响采样速率,从而给基于 PAS 的空气浓度带来不确定性。为了量化风速和风向对以 XAD-树脂为采样介质的圆柱形 PAS 采集的影响,我们在准无风条件下和在以不同速度和角度吹向 PAS 的实验室产生的风中,测量了多氯联苯 (PCBs) 在 XAD 中的采集动力学和硅胶中的水采集动力学。在实验室产生的有风条件下,PCBs 的被动采样速率 (PSR) 比无风室内条件下大约高 3-4 倍。硅胶的水采集速率随风速增加而增加,遵循对数函数,因此在较低风速下 PSR 受影响更大。PCBs 和水的 PSR 随风向变化不大,这与计算流体动力学模拟一致,表明不同风向的风入射只会导致圆柱形采样器外壳内空气速度的微小变化。由于未能成功修改圆柱形 PAS 的设计以消除低风速下 PSR 对风速的依赖性,因此室内和室外部署需要不同的 PSR 集。风速和风向对圆柱形 PAS 的 PSR 的影响远小于双碗聚氨酯泡沫 PAS 报告的影响。因此,暴露于不同风况下的圆柱形 XAD-PAS 的 PSR 变化往往要小得多。

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