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首页> 外文期刊>Journal of occupational and environmental hygiene >Exposure assessment of four pharmaceutical powders based on dustiness and evaluation of damaged HEPA filters.
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Exposure assessment of four pharmaceutical powders based on dustiness and evaluation of damaged HEPA filters.

机译:基于粉尘和损坏的HEPA过滤器的评估,对四种药物粉末进行暴露评估。

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In this study, we show the different dustiness characteristics of four molecular pharmaceutical powder candidates and evaluate the performance of HEPA filters damaged with three different pinhole sizes and exposed to dust using real industrial powders in a miniaturized EN15051 rotating drum dustiness tester. We then demonstrate the potential use of such data using first-order exposure modeling to assess the potential worker exposure and transmission of active powder ingredients into ventilation systems. The four powders had highly variable inhalable dustiness indices (1,036 - 14,501 mg/kg). Dust particle size-distributions were characterized by three peaks; the first occurred around 60-80 nm, the second around 250 nm, and the third at 2-3 μm. The second and third peaks are often observed in dustiness test studies, but peaks in the 60-80 nm range have not been previously reported. Exposure modeling in a 5 times 20 kg powder pouring scenario, suggests that excessive dust concentrations may be reached during use of powders with the highest dustiness levels. By number, filter-damage by three pinhole sizes resulted in damage-dependent penetration of 70-80 nm-size particles, but by volume and mass the penetration is still dominated by particles larger than 100 nm. Whereas the exposure potential was evident, the potential dust concentrations in air ducts following the pouring scenario above were at pg/m(3) levels. Hence, filter penetration at these damage levels was assumed to be only critical, if the active ingredients were associated with high hazard or unique product purity is required. [Supplementary materials are available for this article. Go to the publisher's online edition of Journal of Occupational and Environmental Hygiene for the following free supplemental resource: An example of a typical particle number time-series of a complete dustiness test. It provides information on the HEPA-filter used including a scanning electron microscopy image of it. It also provides APS-measurements of particles penetrating the damaged HEPA-filter.].
机译:在这项研究中,我们展示了四种候选分子药物粉末的不同粉尘特性,并在小型EN15051转鼓粉尘测试仪中,对使用三种不同针孔尺寸损坏并暴露于粉尘的HEPA过滤器的性能进行了评估,并使用了真正的工业粉末。然后,我们使用一阶接触模型来证明此类数据的潜在用途,以评估潜在的工人接触和活性粉末成分向通风系统的传播。四种粉末的吸入粉尘指数变化很大(1,036-14,501 mg / kg)。粉尘粒径分布的特征在于三个峰值。第一次发生在60-80 nm附近,第二次发生在250 nm附近,第三次发生在2-3μm。在粉尘试验研究中经常观察到第二个和第三个峰,但是以前没有报道在60-80 nm范围内的峰。在20公斤粉末浇注量的5倍情况下进行的暴露模型表明,在使用粉尘含量最高的粉末时,可能会达到过量的粉尘浓度。从数量上讲,三个针孔尺寸的过滤器损坏导致70-80 nm尺寸的颗粒取决于损伤的穿透力,但按体积和质量,该穿透力仍主要由大于100 nm的颗粒决定。尽管有明显的暴露潜力,但在上述倾倒情况之后,空气管道中的潜在灰尘浓度为pg / m(3)。因此,如果活性成分与高危害或需要独特的产品纯度有关,则假定在这些损害水平下过滤器的渗透仅是至关重要的。 [本文提供补充材料。请访问出版商的《职业与环境卫生杂志》在线版本,以获取以下免费的补充资源:完整粉尘测试的典型粒子数时间序列的示例。它提供了有关所用HEPA过滤器的信息,包括其扫描电子显微镜图像。它还提供了穿透损坏的HEPA过滤器的颗粒的APS测量。]。

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