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Evaluation of Filter Media for Particle Number, Surface Area and Mass Penetrations

机译:过滤介质的颗粒数,表面积和质量渗透率评估

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The National Institute for Occupational Safety and Health (NIOSH) developed a standard for respirator certification under 42 CFR Part 84, using a TSI 8130 automated filter tester with photometers. A recent study showed that photometric detection methods may not be sensitive for measuring engineered nanoparticles. Present NIOSH standards for penetration measurement are mass-based; however, the threshold limit value/permissible exposure limit for an engineered nanoparticle worker exposure is not yet clear. There is lack of standardized filter test development for engineered nanoparticles, and development of a simple nanoparticle filter test is indicated. To better understand the filter performance against engineered nanoparticles and correlations among different tests, initial penetration levels of one fiberglass and two electret filter media were measured using a series of polydisperse and monodisperse aerosol test methods at two different laboratories (University of Minnesota Particle Technology Laboratory and 3M Company). Monodisperse aerosol penetrations were measured by a TSI 8160 using NaCl particles from 20 to 300nm. Particle penetration curves and overall penetrations were measured by scanning mobility particle sizer (SMPS), condensation particle counter (CPC), nanoparticle surface area monitor (NSAM), and TSI 8130 at two face velocities and three layer thicknesses. Results showed that reproducible, comparable filtration data were achieved between two laboratories, with proper control of test conditions and calibration procedures. For particle penetration curves, the experimental results of monodisperse testing agreed well with polydisperse SMPS measurements. The most penetrating particle sizes (MPPSs) of electret and fiberglass filter media were ~50 and 160nm, respectively. For overall penetrations, the CPC and NSAM results of polydisperse aerosols were close to the penetration at the corresponding median particle sizes. For each filter type, power–law correlations between the penetrations measured by different instruments show that the NIOSH TSI 8130 test may be used to predict penetrations at the MPPS as well as the CPC and NSAM results with polydisperse aerosols. It is recommended to use dry air (20% RH) as makeup air in the test system to prevent sodium chloride particle deliquescing and minimizing the challenge particle dielectric constant and to use an adequate neutralizer to fully neutralize the polydisperse challenge aerosol. For a simple nanoparticle penetration test, it is recommended to use a polydisperse aerosol challenge with a geometric mean of ~50nm with the CPC or the NSAM as detectors.
机译:美国国家职业安全与健康研究所(NIOSH)使用带有光度计的TSI 8130自动过滤器测试仪,根据42 CFR第84部分制定了呼吸器认证标准。最近的一项研究表明,光度检测方法可能对工程纳米颗粒的测量不敏感。当前的NIOSH渗透测量标准是基于质量的;然而,对于工程纳米粒子工人暴露的阈值极限/允许的暴露极限尚不清楚。缺乏针对工程纳米颗粒的标准化过滤器测试开发,并指出了一种简单的纳米颗粒过滤器测试的开发。为了更好地了解针对工程纳米颗粒的过滤器性能以及不同测试之间的相关性,分别在两个不同的实验室(明尼苏达大学颗粒技术实验室和密西根大学实验室)使用一系列多分散和单分散气溶胶测试方法测量了一种玻璃纤维和两种驻极体过滤介质的初始渗透水平。 3M公司)。通过TSI 8160使用20至300nm的NaCl颗粒测量单分散气溶胶渗透。通过扫描迁移率粒度仪(SMPS),冷凝颗粒计数器(CPC),纳米颗粒表面积监测器(NSAM)和TSI 8130以两个表面速度和三层厚度测量颗粒渗透曲线和总渗透率。结果表明,在适当控制测试条件和校准程序的情况下,两个实验室之间可重复获得可比的过滤数据。对于颗粒渗透曲线,单分散测试的实验结果与多分散SMPS测量非常吻合。驻极体和玻璃纤维滤料的最大穿透粒径(MPPS)分别为〜50和160nm。对于总体渗透,多分散气溶胶的CPC和NSAM结果在相应的中值粒径下接近渗透。对于每种过滤器类型,使用不同仪器测得的渗透率之间的幂律相关性表明,NIOSH TSI 8130测试可用于预测MPPS的渗透率以及多分散气溶胶的CPC和NSAM结果。建议在测试系统中使用干燥空气(<20%RH)作为补充空气,以防止氯化钠颗粒潮解并最小化激发颗粒的介电常数,并使用适当的中和剂充分中和多分散激发颗粒。对于简单的纳米粒子渗透测试,建议使用CPC或NSAM作为检测器的几何均值为〜50nm的多分散气溶胶质询。

著录项

  • 来源
    《Annals of Occupational Hygiene》 |2012年第5期|p.581-594|共14页
  • 作者单位

    1 Particle Technology Laboratory, Mechanical Engineering, University of Minnesota, 111 Church Street SE, Minneapolis, MN 55455, USA;

    2 3M Company Building 201-2E-04, Saint Paul, MN 55144, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:11:07

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