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N95 过滤式面罩呼吸阻力死腔温度和湿度。

N95 filtering facepiece respirator deadspace temperature and humidity.

机构信息

National Institute for Occupational Safety and Health, National Personal Protective Technology Laboratory, Pittsburgh, Pennsylvania 15236, USA.

出版信息

J Occup Environ Hyg. 2012;9(3):166-71. doi: 10.1080/15459624.2012.660428.

Abstract

The objective of this study was to determine the levels of heat and humidity that develop within the deadspace of N95 filtering facepiece respirators (N95 FFR). Seventeen subjects wore two models each of N95 FFR and N95 FFR with an exhalation valve (N95 FFR/EV) while exercising on a treadmill at a low-moderate work rate for 1 and 2 hr in a temperate ambient environment. FFR deadspace temperature and relative humidity were monitored by a wireless sensor housed within the FFR. Each FFR was weighed pre- and post-testing to determine moisture retention. After 1 hr, FFR deadspace temperature and humidity were markedly elevated above ambient levels, and the FFR deadspace mean apparent heat index was 54°C. N95 FFR/EV use resulted in significantly lower deadspace temperatures than N95 FFR (p = 0.01), but FFR deadspace humidity levels were not significantly different (p = 0.32). Compared with the first hour of use, no significant increase in FFR deadspace heat and humidity occurred over the second hour. FFR mean moisture retention was < 0.3 grams over 2 hr. N95 FFR/EV offer a significant advantage in deadspace heat dissipation over N95 FFR at a low-moderate work rate over 1 hr of continuous use but offered no additional benefit in humidity amelioration. Moisture retention in N95 FFR and N95 FFR/EV is minimal after 2 hr of use. [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: a file containing N95 filtering facepiece respirator deadspace mean RH and temperature recordings for 17 subjects treadmill exercising at 5.6 Km/H over 1 hour.].

摘要

本研究旨在确定 N95 过滤式面罩呼吸器(N95 FFR)死腔内部产生的热湿水平。17 名受试者在环境温度适中的情况下,在跑步机上以低-中强度工作率分别佩戴两种 N95 FFR 模型和带呼气阀的 N95 FFR(N95 FFR/EV)各两个小时,进行 1 小时和 2 小时的运动。FFR 死腔温度和相对湿度由 FFR 内部的无线传感器进行监测。每个 FFR 在测试前后称重,以确定水分保留情况。1 小时后,FFR 死腔温度和湿度明显高于环境水平,FFR 死腔平均表观热指数为 54°C。与 N95 FFR 相比,N95 FFR/EV 的使用导致死腔温度显著降低(p = 0.01),但 FFR 死腔湿度水平无显著差异(p = 0.32)。与使用 1 小时相比,在使用 2 小时时,FFR 死腔的热和湿度没有显著增加。FFR 的平均水分保留量在 2 小时内<0.3 克。在低-中强度工作率下,连续使用 1 小时后,N95 FFR/EV 在死腔散热方面比 N95 FFR 具有显著优势,但在湿度改善方面没有额外优势。在使用 2 小时后,N95 FFR 和 N95 FFR/EV 的水分保留量很少。[本文有补充材料。请访问《职业与环境卫生杂志》的出版商在线版本,获取以下免费补充资源:包含 17 名受试者以 5.6 公里/小时的速度在跑步机上运动 1 小时时 N95 过滤式面罩呼吸器死腔平均 RH 和温度记录的文件。]

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