使用多孔泡沫的可吸入气溶胶取样器的研制。

C C Chen, C Y Lai, T S Shih, W Y Yeh
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引用次数: 36

摘要

必须对工作场所的气溶胶进行取样,以评估微粒物质对健康的危害程度。通过调整采样流量,大多数采样器可以达到50%的截止尺寸,但不符合美国政府工业卫生学家会议、国际标准化组织和欧洲标准化委员会(CEN)定义的可呼吸性公约的斜率。采用不同标称尺寸(10-100 ppi)和厚度(5-35 mm)的泡沫(或其他多孔材料)组合来克服这种偏差。在石棉取样罩中放置直径为25mm的泡沫盘。邻苯二甲酸二辛酯为液体试验剂。空气动力学粒度仪和气溶胶粒度仪在沉降室中进行了校准,并用于测量泡沫上游和下游的气溶胶数浓度和粒径分布。采样效率数据表明,对于连续泡沫,可以满足50%的截止尺寸,但斜率仍然比新定义的斜率更大。平行的泡沫表现出很大的灵活性,许多平行的组合使斜坡变平,更接近新的国际呼吸公约。例如,当总流量为10.1 L/min时,气溶胶通过平行泡沫(100 ppi, 20 mm厚,直径25 mm + 10 ppi, 20 mm厚,直径13 mm)的穿透率接近新的国际可吸入分数标准。该采样器可以进一步小型化,以适应更小的采样流量,以适应个人采样泵的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of respirable aerosol samplers using porous foams.

Workplace aerosols must be sampled to assess the degree of health hazard caused by the particulate matter. By adjusting the sampling flow rate, most of the samplers can match the 50% cutoff size, but not the slope of the respirable convention defined by the American Conference of Governmental Industrial Hygienists, the International Organization for Standardization, and the European Committee for Standardization (CEN). Combinations of foams (or other porous material) of different nominal sizes (10-100 ppi) and thicknesses (5-35 mm) were employed to overcome this bias. A foam disk 25 mm in diameter was placed in an asbestos sampling cowl. Dioctylphthalate was the liquid test agent. An aerodynamic particle sizer and an Aerosizer were calibrated against a settling chamber and were employed to measure the aerosol number concentrations and size distributions upstream and downstream of the foams. The sampling efficiency data showed that the 50% cutoff size could be met for foams in series, but that the slope remained sharper than the new definition. Foams in parallel showed great flexibility and many of the parallel combinations flattened the slope, closer to that of the new international respirable convention. For instance, when the total flow rate is set at 10.1 L/min the aerosol penetration through foams in parallel (100 ppi, 20 mm thick, diameter 25 mm + 10 ppi, 20 mm thick, diameter 13 mm) nearly matched the new international standard for respirable fraction. This sampler can be further miniaturized for smaller sampling flow rates to fit the capacity of personal sampling pumps.

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