Lovelace Respiratory Research Institute, 2425 Ridgecrest Dr SE, Albuquerque, NM 87108, USA.
Environ Sci Process Impacts. 2014 Feb;16(2):203-10. doi: 10.1039/c3em00497j.
This work investigated the performance in terms of collection efficiency and aspiration efficiency of a personal sampler capable of collecting ultrafine particles (nanoparticles) in the occupational environment. This sampler consists of a cyclone for respirable particle classification, micro-orifice impactor stages with an acceleration nozzle to achieve nanoparticle classification and a backup filter to collect nanoparticles. Collection efficiencies of the cyclone and impactor stages were determined using monodisperse polystyrene latex and silver particles, respectively. Calibration of the cyclone and impactor stages showed 50% cut-off diameters of 3.95 μm and 94.7 nm meeting the design requirements. Aspiration efficiencies of the sampler were tested in a wind tunnel with wind speeds of 0.5, 1.0, and 1.5 m s(-1). The test samplers were mounted on a full size mannequin with three orientations toward the wind direction (0°, 90°, and 180°). Monodisperse oleic acid aerosols tagged with sodium fluorescein in the size range of 2 to 10 μm were used in the test. For particles smaller than 2 μm, the fluorescent polystyrene latex particles were generated by using nebulizers. For comparison of the aspiration efficiency, a NIOSH two-stage personal bioaerosol sampler was also tested. Results showed that the orientation-averaged aspiration efficiency for both samplers was close to the inhalable fraction curve. However, the direction of wind strongly affected the aspiration efficiency. The results also showed that the aspiration efficiency was not affected by the ratio of free-stream velocity to the velocity through the sampler orifice. Our evaluation showed that the current design of the personal sampler met the designed criteria for collecting nanoparticles ≤100 nm in occupational environments.
本研究考察了一种可在职业环境中采集超细颗粒(纳米颗粒)的个人采样器在收集效率和吸气效率方面的性能。该采样器由一个用于呼吸性颗粒分级的旋风分离器、带有加速喷嘴以实现纳米颗粒分级的微孔冲击器级和一个用于收集纳米颗粒的备用过滤器组成。使用单分散聚苯乙烯乳胶和银颗粒分别确定了旋风分离器和冲击器级的收集效率。旋风分离器和冲击器级的校准显示,50%截止直径分别为 3.95μm 和 94.7nm,满足设计要求。采样器的吸气效率在风速为 0.5、1.0 和 1.5m/s 的风洞中进行了测试。测试采样器安装在全尺寸人体模型上,有三个朝向风向的方向(0°、90°和 180°)。使用 2 至 10μm 范围内带有荧光素钠标记的单分散油酸气溶胶进行了测试。对于小于 2μm 的颗粒,使用雾化器生成荧光聚苯乙烯乳胶颗粒。为了比较吸气效率,还测试了 NIOSH 两级个人生物气溶胶采样器。结果表明,两种采样器的定向平均吸气效率接近可吸入部分曲线。然而,风向强烈影响吸气效率。结果还表明,吸气效率不受自由流速度与采样器孔口速度之比的影响。我们的评估表明,目前设计的个人采样器符合在职业环境中收集≤100nm 纳米颗粒的设计标准。