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尺寸不当且拉伸过度的宽松型电动空气净化呼吸器的性能:基于人体模型的研究。

Performance of an improperly sized and stretched-out loose-fitting powered air-purifying respirator: Manikin-based study.

作者信息

Gao Shuang, McKay Roy T, Yermakov Michael, Kim Jinyong, Reponen Tiina, He Xinjian, Kimura Kazushi, Grinshpun Sergey A

机构信息

a Center for Health-Related Aerosol Studies, Department of Environmental Health, University of Cincinnati , Cincinnati , Ohio.

b Department of Industrial and Management Systems Engineering , Statler College of Engineering and Mineral Resources, West Virginia University , Morgantown , West Virginia.

出版信息

J Occup Environ Hyg. 2016;13(3):169-76. doi: 10.1080/15459624.2015.1098780.

Abstract

The objective of this study was to investigate the protection level offered by a Powered Air-Purifying Respirator (PAPR) equipped with an improperly sized or stretched-out loose-fitting facepiece using constant and cyclic flow conditions. Improperly sized PAPR facepieces of two models as well as a stretched-out facepiece were tested. These facepieces were examined in two versions: with and without exhaust holes. Loose-fitting facepieces (size "large") were donned on a small manikin headform and challenged with sodium chloride (NaCl) aerosol particles in an exposure chamber. Four cyclic flows with mean inspiratory flows (MIFs) of 30, 55, 85, and 135 L/min were applied using an electromechanical Breathing Recording and Simulation System (BRSS). The manikin Fit Factor (mFF) was determined as the ratio of aerosol concentrations outside (Cout) to inside (Cin) of the facepiece, measured with a P-Trak condensation particle counter (CPC). Results showed that the mFF decreased exponentially with increasing MIF. The mFF values of the stretched-out facepiece were significantly lower than those obtained for the undamaged ones. Facepiece type and MIF were found to significantly affect the performance of the loose-fitting PAPR. The effect of the exhaust holes was less pronounced and depended on the facepiece type. It was concluded that an improperly sized facepiece might potentially offer relatively low protection (mFF < 250) at high to strenuous workloads. The testing was also performed at a constant inhalation flow to explore the mechanism of the particle-facepiece interaction. Results obtained with cyclic flow pattern were consistent with the data generated when testing the loose-fitting PAPR under constant flow conditions. The time-weighted average values of mFF calculated from the measurements conducted under the constant flow regime were capable of predicting the protection under cyclic flow regime. The findings suggest that program administrators need to equip employees with properly sized facepieces and remove stretched-out ones from workplace. Manufacturers should emphasize the importance of proper sizing with their user instructions.

摘要

本研究的目的是调查配备尺寸不当或拉伸变形的宽松面罩的动力空气净化呼吸器(PAPR)在恒定和循环气流条件下提供的防护水平。对两种型号尺寸不当的PAPR面罩以及一个拉伸变形的面罩进行了测试。这些面罩分两种版本进行检查:有排气孔和无排气孔。将宽松面罩(尺寸“大”)戴在小型人体模型头部,并在暴露舱中用氯化钠(NaCl)气溶胶颗粒进行挑战。使用机电呼吸记录和模拟系统(BRSS)施加四种平均吸气流量(MIF)分别为30、55、85和135 L/min的循环气流。人体模型适配因子(mFF)被确定为面罩外部(Cout)与内部(Cin)气溶胶浓度之比,用P-Trak冷凝粒子计数器(CPC)测量。结果表明,mFF随MIF增加呈指数下降。拉伸变形面罩的mFF值显著低于未损坏面罩的mFF值。发现面罩类型和MIF对宽松式PAPR的性能有显著影响。排气孔的影响不太明显,且取决于面罩类型。得出的结论是,尺寸不当的面罩在高至高强度工作负荷下可能提供相对较低的防护(mFF < 250)。还在恒定吸入流量下进行了测试,以探索颗粒与面罩相互作用的机制。循环气流模式下获得的结果与在恒定气流条件下测试宽松式PAPR时生成的数据一致。根据恒定气流状态下测量计算得到的mFF时间加权平均值能够预测循环气流状态下的防护情况。研究结果表明,项目管理人员需要为员工配备尺寸合适的面罩,并将拉伸变形的面罩从工作场所移除。制造商应在用户说明中强调正确尺寸的重要性。

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