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首页> 外文期刊>Journal of Nanoparticle Research >Inter-laboratory performance between two nanoparticle air filtration systems using scanning mobility particle analyzers
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Inter-laboratory performance between two nanoparticle air filtration systems using scanning mobility particle analyzers

机译:使用扫描迁移率粒子分析仪的两个纳米粒子空气过滤系统之间的实验室间性能

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摘要

The performance of two aerosol testing systems, at two different laboratories (University of Nebraska Medical Center—UNMC and 3M Company), was compared to evaluate which calibration procedures minimized variability in filter testing of nanoparticles. Both charged electret and uncharged flat-web fibrous filters were used with Scanning Mobility Particle Sizers to give upstream and downstream size distributions and calculate filter penetration. Challenge aerosols were polydisperse nanoparticles of sodium chloride (NaCl) ranging from approximately 10–300 nm and monodisperse polystyrene latex (PSL) spheres of preselected sizes, including 40, 60, 100, and 200 nm. The implementation of optimized procedures resulted in comparable filtration performance at the two testing sites with challenges of NaCl particles and PSL spheres. The penetration results for the uncharged filter were nearly identical for both challenges, while lower penetration through the charged filter was observed with NaCl aerosol, probably due to differences in NaCl and PSL dielectric constants. Results showed that reproducible, comparable nanoparticle filtration data could be achieved between two separate laboratories when sources of error and proper calibration procedures were addressed.
机译:比较了两个不同实验室(内布拉斯加州大学医学中心-UNMC和3M公司)的两个气溶胶测试系统的性能,以评估哪种校准程序将纳米颗粒过滤器测试的可变性降至最低。带电驻极体和不带电平网纤维过滤器均与扫描迁移率粒度仪一起使用,以给出上游和下游的粒度分布并计算过滤器的渗透率。挑战性气溶胶是氯化钠(NaCl)的多分散纳米颗粒,范围约为10-300 nm,以及预选定尺寸(包括40、60、100和200 nm)的单分散聚苯乙烯胶乳(PSL)球。优化程序的实施导致在两个测试点具有可比的过滤性能,但面临NaCl颗粒和PSL球的挑战。在这两个挑战中,不带电过滤器的渗透结果几乎相同,而使用NaCl气溶胶则观察到通过带电过滤器的渗透率较低,这可能是由于NaCl和PSL介电常数的差异。结果表明,当解决了误差来源和适当的校准程序时,可以在两个单独的实验室之间获得可重复的,可比的纳米颗粒过滤数据。

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