Cook David M, Sleeth Darrah K, Thiese Matthew S, Larson Rodney R
a Department of Family and Preventive Medicine, Rocky Mountain Center for Occupational and Environmental Health , University of Utah , Salt Lake City , Utah.
J Occup Environ Hyg. 2015;12(3):199-204. doi: 10.1080/15459624.2014.968248.
The current method for sampling aerosols using the 37-mm closed-face cassette (CFC) sampler is based on the orientation of the cassette at ∼45° from horizontal. There is some concern as to whether this method is appropriate and may be underestimating exposures. An alternative orientation at ∼0° (horizontal) has been discussed. This research compared the CFC's orientation at 45° from horizontal to the proposed orientation at horizontal, 0° in a controlled laboratory setting. The particles used in this study were fused alumina oxide in four sizes, approximately 9.5 μm, 12.8 μm, 18 μm, and 44.3 μm in aerodynamic diameter. For each test, one aerosol was dispersed in a wind tunnel operating at 0.2 m/s with samplers mounted in the breathing zone of a rotating mannequin. A sampling event consisted of four pairs of samplers, placed side by side (one pair at 45° and another at 0° cassette orientation), and exposed for a period of 45 minutes. A total of 12 sampling events, 3 sample events per particle size, were conducted with a total of 94 samples collected. Mass concentration measurements were compared to assess the relationship between the sampler orientations of the cassettes. In addition, the relationship between the mass collected on the cassette filter and on the interior walls of the cassette was also assessed. The results indicated that there was no significant difference between the measured concentrations based on the orientation of the CFCs. The amount of mass collected on the interior walls of the cassettes was relatively low (<5%) compared to expected (up to 100%) wall losses for both orientations.
目前使用37毫米封闭式采样盒(CFC)采样器采集气溶胶的方法是基于采样盒与水平面呈约45°角的方向。对于该方法是否合适以及是否可能低估暴露量存在一些担忧。已经讨论了另一种约0°(水平)的方向。本研究在受控实验室环境中,将CFC与水平面呈45°角的方向与提议的水平方向(0°)进行了比较。本研究中使用的颗粒是四种尺寸的熔融氧化铝,空气动力学直径约为9.5微米、12.8微米、18微米和44.3微米。每次测试时,将一种气溶胶分散在以0.2米/秒运行的风洞中,采样器安装在旋转人体模型的呼吸区内。一次采样事件包括四对采样器,并排放置(一对采样器的采样盒方向为45°,另一对为0°),暴露45分钟。总共进行了12次采样事件,每种粒径进行3次采样事件,共采集了94个样本。比较质量浓度测量结果以评估采样盒采样器方向之间的关系。此外,还评估了采样盒滤膜上和采样盒内壁上所采集质量之间的关系。结果表明,基于CFC方向的测量浓度之间没有显著差异。与两种方向预期的(高达100%)壁面损失相比,采样盒内壁上采集的质量相对较低(<5%)。