Department of Mechanical Engineering, Colorado State University, Fort Collins, Colorado.
Department of Environmental Sciences and Engineering, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina.
J Occup Environ Hyg. 2020 Jun;17(6):274-282. doi: 10.1080/15459624.2020.1741595. Epub 2020 Apr 13.
The Ultrasonic Personal Aerosol Sampler (UPAS) is a small, lightweight, and quiet sampler that collects airborne particulate matter on a filter for gravimetric or compositional analysis. The objective of this work was to develop UPAS inlets with collection efficiencies that match criteria for respirable or thoracic mass sampling. The two-stage inlet for respirable mass described here utilizes an impaction stage and a cyclone, whereas the one-stage inlet for thoracic mass sampling utilizes a circular slot impactor. Inlet designs are based on particle collection theory used in conjunction with an optimization algorithm to predict initial inlet dimensions; these predictions were the starting points for experiments that finalized dimensions and operating conditions. Both the respirable mass inlet and the thoracic mass inlet described here are interchangeable with the UPAS, and both have efficiencies that match well with their respective standards. With either inlet, the collected sample should be within ±5% of what the standard specifies for aerosols with reasonably broad size distributions.
超声个人气溶胶采样器(UPAS)是一种小型、轻便且安静的采样器,可在过滤器上收集空气中的颗粒物,用于重量分析或成分分析。本工作的目的是开发具有符合可吸入或胸部质量采样标准的收集效率的 UPAS 入口。这里描述的用于可吸入质量的两段式入口利用了撞击段和旋风分离器,而用于胸部质量采样的单段入口则利用了圆形狭缝撞击器。入口设计基于在与优化算法结合使用的颗粒收集理论,以预测初始入口尺寸;这些预测是确定最终尺寸和操作条件的实验的起点。这里描述的可吸入质量入口和胸部质量入口都可以与 UPAS 互换,并且它们的效率都与各自的标准很好地匹配。使用这两种入口,收集的样品应与标准规定的具有较宽尺寸分布的气溶胶相差在±5%以内。