...
首页> 外文期刊>Journal of occupational and environmental hygiene >Penetration of Combustion Aerosol Particles Through Filters of NIOSH-Certified Filtering Facepiece Respirators (FFRs)
【24h】

Penetration of Combustion Aerosol Particles Through Filters of NIOSH-Certified Filtering Facepiece Respirators (FFRs)

机译:通过NIOSH认证的过滤式口罩呼吸器(FFR)的过滤器渗透燃烧气溶胶颗粒

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Filtering facepiece respirators (FFRs) are commonly worn by first responders, first receivers, and other exposed groups to protect against exposure to airborne particles, including those originated by combustion. Most of these FFRs are NIOSH-certified (e.g., N95-type) based on the performance testing of their filters against charge-equilibrated aerosol challenges, e.g., NaCl. However, it has not been examined if the filtration data obtained with the NaCl-challenged FFR filters adequately represent the protection against real aerosol hazards such as combustion particles. A filter sample of N95 FFR mounted on a specially designed holder was challenged with NaCl particles and three combustion aerosols generated in a test chamber by burning wood, paper, and plastic. The concentrations upstream (C-up) and downstream (C-down) of the filter were measured with a TSI P-Trak condensation particle counter and a Grimm Nanocheck particle spectrometer. Penetration was determined as (C-down/C-up) x100%. Four test conditions were chosen to represent inhalation flows of 15, 30, 55, and 85 L/min. Results showed that the penetration values of combustion particles were significantly higher than those of the "model" NaCl particles (p < 0.05), raising a concern about applicability of the N95 filters performance obtained with the NaCl aerosol challenge to protection against combustion particles. Aerosol type, inhalation flow rate and particle size were significant (p < 0.05) factors affecting the performance of the N95 FFR filter. In contrast to N95 filters, the penetration of combustion particles through R95 and P95 FFR filters (were tested in addition to N95) were not significantly higher than that obtained with NaCl particles. The findings were attributed to several effects, including the degradation of an N95 filter due to hydrophobic organic components generated into the air by combustion. Their interaction with fibers is anticipated to be similar to those involving "oily" particles. The findings of this study suggest that the efficiency of N95 respirator filters obtained with the NaCl aerosol challenge may not accurately predict (and rather overestimate) the filter efficiency against combustion particles.
机译:急救人员,急救人员和其他暴露人群通常佩戴过滤式口罩呼吸器(FFR),以防止暴露于空气中的颗粒物,包括燃烧产生的颗粒物。这些滤清器中的大多数都是经过NIOSH认证的(例如N95型),基于其滤器针对电荷平衡的气溶胶挑战(例如NaCl)的性能测试而定。但是,尚未检查使用挑战NaCl的FFR过滤器获得的过滤数据是否足以代表对真正的气溶胶危害(例如燃烧颗粒)的防护。安装在特别设计的支架上的N95 FFR过滤器样品受到NaCl颗粒和测试室通过燃烧木材,纸张和塑料而产生的三种燃烧气溶胶的挑战。使用TSI P-Trak冷凝粒子计数器和Grimm Nanocheck粒子光谱仪测量过滤器上游(C-up)和下游(C-down)的浓度。穿透度确定为(C向下/ C向上)×100%。选择四个测试条件来代表15、30、55和85 L / min的吸入流量。结果表明,燃烧颗粒的渗透值明显高于“模型” NaCl颗粒的渗透值(p <0.05),这引起了人们对用NaCl气溶胶挑战获得的N95过滤器性能对燃烧颗粒的防护是否适用的担忧。气溶胶类型,吸入流速和颗粒大小是影响N95 FFR过滤器性能的重要因素(p <0.05)。与N95过滤器相比,燃烧颗粒通过R95和P95 FFR过滤器(除N95之外还进行了测试)的渗透率并不明显高于NaCl颗粒。这些发现归因于多种影响,包括由于燃烧产生的空气中的疏水性有机成分导致N95过滤器的降解。预期它们与纤维的相互作用类似于涉及“油性”颗粒的相互作用。这项研究的结果表明,用NaCl气雾剂挑战获得的N95呼吸器过滤器的效率可能无法准确预测(甚至高估)过滤器对燃烧颗粒的效率。

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