...
首页> 外文期刊>Radiation Protection and Environment >Evaluation of protection factor of respiratory protective equipment using indigenously developed protection factor test facility
【24h】

Evaluation of protection factor of respiratory protective equipment using indigenously developed protection factor test facility

机译:使用本地开发的保护因子测试工具评估呼吸防护设备的保护因子

获取原文
获取原文并翻译 | 示例
           

摘要

Protection factor (PF) of a respirator is a number that describes the effectiveness of various classes of respirators in providing protection against exposure to airborne contaminants (including particulates, gases, vapors, and biological agents). The PF is derived from the ratio of the concentration of an airborne contaminant (e.g., hazardous substance) outside the respirator (C_o) to the concentration inside the respirator (C_i) (i.e., C_o/C_i). As the PF increases, there is an increase in the level of respiratory protection provided to employees by the respirator. PF Test Facility for the estimation of PF for various respiratory protective equipment was designed, fabricated, and installed at the Respiratory Protective Equipment Laboratory of Health Physics Division. The test facility consists of established air flow at a breathing rate through respirator darn on a human dummy and two identical tapings for iso-kinetic sampling from outside and inside the respirator. These tapings are coupled to two identical optical particle counters (OPCs) for the measurement of aerosol concentration simultaneously, and data acquired by the two OPCs are analyzed for estimating PF for different particle sizes using GRIM AEROSOL software. The results obtained from the studies carried out using this unique setup - air-purifying respirators such as half face mask, full face mask, and powered air-purifying respirators - were found offering a PF of 14,112, and 1328, respectively, for selected range of 0.28-0.3-μm size standard sodium chloride (NaCl) aerosols. Standard NaCl aerosols used in experiments are polydispersed. However, the 0.3 μ. size range (0.28-0.3) was selected as a benchmark for efficiency ratings and PF of respirators because it approximates the most difficult particle size for filters to capture and the least filtration efficiency is obtained in this range. This article brings out the details of design features of the setup and studies and results obtained for various types of respirators used in nuclear facilities.
机译:呼吸器的防护系数(PF)是一个数字,描述了各种类型的呼吸器在提供针对暴露于空气中的污染物(包括微粒,气体,蒸气和生物制剂)的防护中的有效性。 PF是从呼吸器(C_o)外部的空气污染物(例如危险物质)浓度与呼吸器(C_i)的内部浓度(C_o / C_i)之比得出的。随着PF的增加,呼吸器为员工提供的呼吸防护水平也随之增加。用于估计各种呼吸防护设备的PF的PF测试设备是在健康物理科的呼吸防护设备实验室设计,制造和安装的。该测试设备包括通过假人上的呼吸器织机以固定的呼吸速率建立的气流,以及两个相同的包带,用于从呼吸器的外部和内部进行等速采样。这些包带与两个相同的光学粒子计数器(OPC)耦合以同时测量气溶胶浓度,并使用GRIM AEROSOL软件分析了两个OPC采集的数据以估算不同粒径的PF。使用这种独特设置进行的研究获得的结果-选定范围内的空气净化呼吸器(如半面罩,全面罩和电动空气净化呼吸器)的PF分别为14,112和1328。 0.28-0.3-μm大小的标准氯化钠(NaCl)气雾剂。实验中使用的标准NaCl气溶胶是多分散的。但是,为0.3μ。选择尺寸范围(0.28-0.3)作为呼吸器效率等级和PF的基准,因为它近似于过滤器难以捕获的最大粒径,并且在该范围内获得的过滤效率最低。本文详细介绍了用于核设施的各种类型的呼吸器的设置和研究的设计特征以及获得的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号