Stewart Justin, Sleeth Darrah K, Handy Rod G, Pahler Leon F, Anthony T Renee, Volckens John
a Department of Family and Preventive Medicine , University of Utah , Salt Lake City , Utah.
b Department of Occupational and Environmental Health , University of Iowa , Iowa City , Iowa.
J Occup Environ Hyg. 2017 Mar;14(3):207-213. doi: 10.1080/15459624.2016.1237028.
A newly designed, low-cost, disposable inhalable aerosol sampler was developed to assess workers personal exposure to inhalable particles. This sampler was originally designed to operate at 10 L/min to increase sample mass and, therefore, improve analytical detection limits for filter-based methods. Computational fluid dynamics modeling revealed that sampler performance (relative to aerosol inhalability criteria) would not differ substantially at sampler flows of 2 and 10 L/min. With this in mind, the newly designed inhalable aerosol sampler was tested in a wind tunnel, simultaneously, at flows of 2 and 10 L/min flow. A mannequin was equipped with 6 sampler/pump assemblies (three pumps operated at 2 L/min and three pumps at 10 L/min) inside a wind tunnel, operated at 0.2 m/s, which has been shown to be a typical indoor workplace wind speed. In separate tests, four different particle sizes were injected to determine if the sampler's performance with the new 10 L/min flow rate significantly differed to that at 2 L/min. A comparison between inhalable mass concentrations using a Wilcoxon signed rank test found no significant difference in the concentration of particles sampled at 10 and 2 L/min for all particle sizes tested. Our results suggest that this new aerosol sampler is a versatile tool that can improve exposure assessment capabilities for the practicing industrial hygienist by improving the limit of detection and allowing for shorting sampling times.
一种新设计的低成本一次性可吸入气溶胶采样器被开发出来,用于评估工人个人对可吸入颗粒物的暴露情况。该采样器最初设计为以10升/分钟的流量运行,以增加样品质量,从而提高基于滤膜方法的分析检测限。计算流体动力学建模显示,在2升/分钟和10升/分钟的采样器流量下,采样器性能(相对于气溶胶可吸入性标准)不会有显著差异。考虑到这一点,新设计的可吸入气溶胶采样器在风洞中同时以2升/分钟和10升/分钟的流量进行了测试。在一个风速为0.2米/秒的风洞内,一个人体模型配备了6个采样器/泵组件(三个泵以2升/分钟运行,三个泵以10升/分钟运行),该风速已被证明是典型的室内工作场所风速。在单独的测试中,注入了四种不同粒径的颗粒物,以确定新的10升/分钟流速下采样器的性能与2升/分钟时是否有显著差异。使用Wilcoxon符号秩检验对可吸入质量浓度进行比较发现,对于所有测试粒径,在10升/分钟和2升/分钟采集的颗粒物浓度没有显著差异。我们的结果表明,这种新型气溶胶采样器是一种多功能工具,通过提高检测限和缩短采样时间,可以提高工业卫生从业者的暴露评估能力。