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首页> 外文期刊>Journal of environmental monitoring: JEM >A study of aerosol entrapment and the influence of wind speed, chamber design and foam density on polyurethane foam passive air samplers used for persistent organic pollutants
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A study of aerosol entrapment and the influence of wind speed, chamber design and foam density on polyurethane foam passive air samplers used for persistent organic pollutants

机译:研究气溶胶截留以及风速,腔室设计和泡沫密度对用于持久性有机污染物的聚氨酯泡沫被动空气采样器的影响

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摘要

Polyurethane foam disks are a cheap and versatile tool for sampling persistent organic pollutants (POPs) from the air in ambient, occupational and indoor settings. This study provides important background information on the ways in which the performance of these commonly used passive air samplers may be influenced by the key environmental variables of wind speed and aerosol entrapment. Studies were performed in the field, a wind tunnel and with microscopy techniques, to investigate deployment conditions and foam density influence on gas phase sampling rates (not obtained in this study) and aerosol trapping. The study showed: wind speed inside the sampler is greater on the upper side of the sampling disk than the lower side and tethered samplers have higher wind speeds across the upper and lower surfaces of the foam disk at a wind speed ≥4 m/s; particles are trapped on the foam surface and within the body of the foam disk; fine (<1 um) particles can form clusters of larger size inside the foam matrix. Whilst primarily designed to sample gas phase POPs, entrapment of particles ensures some 'sampling' of particle bound POPs species, such as higher molecular weight PAHs and PCDD/Fs. Further work is required to investigate how quantitative such entrapment or 'sampling' is under different ambient conditions, and with different aerosol sizes and types.
机译:聚氨酯泡沫盘是一种廉价且通用的工具,可用于在环境,职业和室内环境中从空气中采样持久性有机污染物(POP)。这项研究提供了重要的背景信息,说明这些常用的被动式空气采样器的性能可能受到风速和气溶胶截留的关键环境变量的影响。在野外,风洞和显微镜技术下进行了研究,以研究部署条件和泡沫密度对气相采样率(本研究中未获得)和气溶胶捕获的影响。研究表明:在采样盘的上侧,采样器内部的风速大于下侧;在风速≥4m / s的情况下,系留采样器在泡沫盘的上,下表面具有更高的风速;颗粒被捕获在泡沫表面和泡沫盘的主体内;细小的(<1微米)颗粒可以在泡沫基质内部形成较大尺寸的簇。虽然主要用于采样气相POP,但粒子的截留可确保对与粒子结合的POP种类(例如更高分子量的PAH和PCDD / F)进行一些“采样”。需要做进一步的工作来研究在不同的环境条件下以及在不同的气溶胶大小和类型下这种截留或“采样”的数量如何。

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