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Field and Wind Tunnel Comparison of Four Aerosol Samplers Using Agricultural Dusts

机译:四种使用农业粉尘的气溶胶采样器的风场和风洞比较

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摘要

Occupational lung disease is a significant problem among agricultural workers exposed to organic dusts. Measurements of exposure in agricultural environments in the USA have traditionally been conducted using 37-mm closed-face cassettes (CFCs) and respirable Cyclones. Inhalable aerosol samplers offer significant improvement for dose estimation studies to reduce respiratory disease. The goals of this study were to determine correction factors between the inhalable samplers (IOM and Button) and the CFC and Cyclone for dusts sampled in livestock buildings and to determine whether these factors vary among livestock types. Determination of these correction factors will allow comparison between inhalable measurements and historical measurements. Ten sets of samples were collected in swine, chicken, turkey, and dairy facilities in both Colorado and Iowa. Pairs of each sampling device were attached to the front and back of a rotating mannequin. Laboratory studies using a still-air chamber and a wind tunnel provided information regarding the effect of wind speed on sampler performance. Overall, the IOM had the lowest coefficient of variation (best precision) and was least affected by changes in wind speed. The performance of the Button was negatively impacted in poultry environments where larger (feather) particulates clogged the holes in the initial screen. The CFC/IOM ratios are important for comparisons between newer and older studies. Wind speed and dust type were both important factors affecting ratios. Based on the field studies (Table 6), a ratio of 0.56 is suggested as a conversion factor for the CFC/IOM (average for all environments because of no statistical difference). Suggested conversion factors for the Button/IOM are swine (0.57), chicken (0.80), turkey (0.53), and dairy (0.67). Any attempt to apply a conversion factor between the Cyclone and inhalable samplers is not recommended.
机译:在暴露于有机粉尘的农业工人中,职业性肺病是一个重大问题。传统上,在美国农业环境中的暴露测量是使用37毫米封闭式暗盒(CFC)和可呼吸的旋风分离器进行的。可吸入的气溶胶采样器为减少呼吸系统疾病的剂量估算研究提供了重大改进。这项研究的目的是确定可吸入式采样器(IOM和Button)与CFC和旋风分离器之间在畜牧建筑中采样的粉尘的校正因子,并确定这些因子是否在不同的牲畜类型之间有所不同。确定这些校正因子将允许在可吸入测量值和历史测量值之间进行比较。在科罗拉多州和爱荷华州的猪,鸡,火鸡和奶牛场收集了十套样品。成对的每个采样设备都固定在旋转人体模型的正面和背面。使用静止空气室和风洞的实验室研究提供了有关风速对采样器性能影响的信息。总体而言,IOM的变化系数最低(精度最高),并且受风速变化的影响最小。在较大的(羽毛)颗粒堵塞了初始筛孔的家禽环境中,Button的性能受到不利影响。 CFC / IOM比率对于新旧研究之间的比较很重要。风速和灰尘类型都是影响比率的重要因素。根据现场研究(表6),建议使用0.56的比率作为CFC / IOM的转换因子(由于没有统计差异,因此为所有环境的平均值)。 Button / IOM的建议转换因子是猪(0.57),鸡(0.80),火鸡(0.53)和乳制品(0.67)。不建议尝试在旋风分离器和可吸入式采样器之间应用转换因子。

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