首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Field Evaluation of N95 Filtering Facepiece Respirators on Construction Jobsites for Protection against Airborne Ultrafine Particles
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Field Evaluation of N95 Filtering Facepiece Respirators on Construction Jobsites for Protection against Airborne Ultrafine Particles

机译:N95过滤式口罩呼吸器在施工现场的现场评估以防止空气中的超细颗粒物传播

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摘要

Exposure to high concentrations of airborne ultrafine particles in construction jobsites may play an important role in the adverse health effects among construction workers, therefore adequate respiratory protection is required. The performance of particulate respirators has never been evaluated in field conditions against ultrafine particles on construction jobsites. In this study, respiratory protection levels against ultrafine particles of different size ranges were assessed during three common construction related jobs using a manikin-based set-up at 85 L/min air flow rate. Two NanoScan SMPS nanoparticle counters were utilized for measuring ultrafine particles in two sampling lines of the test filtering facepiece respirator—one from inside the respirator and one from outside the respirator. Particle size distributions were characterized using the NanoScan data collected from outside of the respirator. Two models of N95 respirators were tested—foldable and pleated. Collected data indicate that penetration of all categories of ultrafine particles can exceed 5% and smaller ultrafine particles of <36.5 nm size generally penetrated least. Foldable N95 filtering facepiece respirators were found to be less efficient than pleated N95 respirators in filtering nanoparticles mostly at the soil moving site and the wooden building frameworks construction site. Upon charge neutralization by isopropanol treatment, the ultrafine particles of larger sizes penetrated more compared to particles of smaller sizes. Our findings, therefore, indicate that N95 filtering facepiece respirators may not provide desirable 95% protection for most categories of ultrafine particles and generally, 95% protection is achievable for smaller particles of 11.5 to 20.5 nm sizes. We also conclude that foldable N95 respirators are less efficient than pleated N95 respirators in filtering ultrafine particles, mostly in the soil moving site and the wooden building framework construction site.
机译:在建筑工地中暴露于高浓度的空气传播的超细颗粒可能对建筑工人的健康产生不利影响,因此需要充分的呼吸防护。从未在现场条件下针对建筑工地上的超细颗粒物评估过颗粒呼吸器的性能。在这项研究中,使用基于人体模型的装置以85 L / min的空气流速评估了三种常见的与建筑有关的工作期间针对不同尺寸范围的超细颗粒的呼吸防护水平。在测试过滤面罩呼吸器的两条采样线中,使用了两个NanoScan SMPS纳米粒子计数器来测量超细颗粒-一个来自呼吸器内部,另一个来自呼吸器外部。使用从呼吸器外部收集的NanoScan数据来表征粒径分布。测试了两种型号的N95呼吸器-可折叠和打褶。收集的数据表明,所有类别的超细颗粒的渗透率都可以超过5%,而尺寸小于36.5 nm的较小超细颗粒的渗透率通常最低。发现可折叠的N95过滤式面罩呼吸器的效率比打褶的N95呼吸器要低,主要是在土壤运移现场和木制建筑框架施工现场过滤纳米颗粒。通过异丙醇处理进行电荷中和后,与较小尺寸的颗粒相比,较大尺寸的超细颗粒渗透的更多。因此,我们的发现表明,N95过滤式面罩呼吸器可能无法为大多数类别的超细颗粒提供理想的95%防护,通常,对于11.5至20.5 nm尺寸的较小颗粒,可以实现95%的防护。我们还得出结论,可折叠的N95防毒面具在过滤超细颗粒方面的效率不如打褶的N95防毒面具,主要是在土壤移动场所和木制建筑框架建筑场所。

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