评价真空吸尘器的过滤和微粒排放特性的试验方法。

K. Willeke, S. Trakumas, S. Grinshpun, T. Reponen, M. Trunov, W. Friedman
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引用次数: 14

摘要

传统上,真空吸尘器的整体过滤效率是通过将真空吸尘器放在测试室中并测量室入口和出口的气溶胶浓度来测试的。本研究对试验方法进行了改进和验证。然而,这种室内测试方法显示,对于大多数工业吸尘器和大多数新开发的中等或更高价格的家用吸尘器,总体过滤效率接近100%,因为所有这些吸尘器都在排气处安装了高效微粒空气(HEPA)或其他高效过滤器。因此,开发了一种新的测试方法,通过在不同的内部位置探测真空吸尘器,以便确定单个组件的收集效率。例如,可以测量最终HEPA过滤器上游的气溶胶浓度,从而可以估计这种昂贵组件的预期寿命。探针测试方法特别适用于真空吸尘器的现场评估,因为它使用紧凑的,电池供电的光学粒度光谱仪与内部数据存储。对于气溶胶过滤效率,腔室试验和探针试验给出了相同的结果。然而,探针测试方法也提供了真空吸尘器中各个部件性能的信息。它还可以用来确定吸尘效率和收集在吸尘器中的颗粒的再雾化程度。
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Test methods for evaluating the filtration and particulate emission characteristics of vacuum cleaners.
The overall filtration efficiency of a vacuum cleaner traditionally has been tested by placing the vacuum cleaner in a test chamber and measuring aerosol concentrations at the chamber inlet and outlet. The chamber test method was refined and validated in this study. However, this chamber test method shows an overall filtration efficiency of close to 100% for most of the industrial vacuum cleaners and for most of the newly developed household vacuum cleaners of midprice range or higher because all these vacuum cleaners have a high-efficiency particulate air (HEPA) or other highly efficient filter installed at the exhaust. A new test method was therefore developed through which the vacuum cleaner was probed in various internal locations so that the collection efficiency of the individual components could be determined. For example, the aerosol concentration upstream of the final HEPA filter can thus be measured, which permits one to estimate the life expectancy of this expensive component. The probed testing method is particularly suitable for field evaluations of vacuum cleaners because it uses compact, battery-operated optical particle size spectrometers with internal data storage. Both chamber and probed tests gave the same results for the aerosol filtration efficiency. The probed testing method, however, also gives information on the performance of the individual components in a vacuum cleaner. It also can be used to determine the dust pickup efficiency and the degree of reaerosolization of particles collected in the vacuum cleaner.
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