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EVALUATION OF GLASS FIBER HEPA FILTERS AS A FUNCTION OF MEDIA VELOCITY

机译:评估玻璃纤维HEPA过滤器作为媒体速度的函数

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Section FC of the ASME AG-1 Code addresses glass fiber HEPA filters and restricts the media velocity to a maximum of 2.54 cm/s (5 ft/min). Advances in filter media technology allow glass fiber HEPA filters to function at significantly higher velocities and still achieve HEPA performance. However, diffusional capture of particles < 100 nm is reduced at higher media velocities due to shorter residence times within the media matrix. Therefore, it is unlikely that higher media velocities for HEPA filters will be allowed without data to demonstrate the effect of media velocity on removal of particles in the smaller size classes. In order to address this issue, static testing has been conducted to generate performance related data and a range of dynamic testing has provided data regarding filter lifetimes, loading characteristics, changes in filter efficiency and the most penetrating particle size over time, Testing was conducted using 31 cm x 31 cm x 29 cm deep pleat HEPA filters supplied from two manufacturers. Testing was conducted at media velocities ranging from 2-4.5 cm/s. using a solid aerosol challenge composed of potassium chloride. Two set of media velocity data were obtained for each filter type, In one set of evaluations, the maximum aerosol challenge particle size was limited to 3 ixm, while particles above 3 urn were not constrained in the second set, This provided for considerable variability in the challenge mass mean diameter and overall mass loading rate. Results of this testing will be provided to the ASME AG-1 FC Committee for consideration in future versions of the HEPA standard, In general, the initial filter efficiency decreased with increasing media velocity. However, initial filter efficiencies were generally good in all cases Filter efficiency values averaged over the first ten minute of the loading cycle ranged from 99.970 to 99.996 %. Additionally, the most penetrating particle size was observed to decrease with increasing media velocity, with initial values ranging from 194 to 134 nm.
机译:ASME AG-1代码的部分FC地址玻璃纤维HEPA过滤器并将介质速度限制在最大值为2.54cm / s(5英尺/分钟)。过滤介质技术的进步允许玻璃纤维HEPA过滤器在显着更高的速度下起作用,仍然实现HEPA性能。然而,由于介质矩阵内的较短停留时间,在更高的介质速度下降低颗粒<100nm的扩散捕获。因此,在没有数据的情况下,将不太可能对HEPA过滤器进行更高的媒体速度,以证明介质速度对较小尺寸类别中的颗粒的效果。为了解决这个问题,已经进行了静态测试以产生性能相关数据,并且一系列动态测试提供了有关过滤器的寿命,装载特性,过滤器效率变化以及随着时间的推移最多的渗透粒度的数据,进行测试31厘米x 31厘米x 29厘米深褶的HEPA过滤器,从两家制造商提供。在介质速度下进行测试,范围为2-4.5cm / s。使用由氯化钾组成的固体气溶胶挑战。为每个过滤器类型获得两组媒体速度数据,在一组评价中,最大气溶胶攻击粒度限制为3 ixm,而3瓮的颗粒在第二组中没有受约束,这提供了相当大的变化挑战质量平均直径和整体批量加载速率。该测试的结果将提供给ASME AG-1 FC委员会以考虑HEPA标准的未来版本,通常,随着媒体速度的增加,初始滤波效率降低。然而,初始过滤效率通常良好,在所有情况下,在装载循环的前十分钟的平均值平均为99.970至99.996%。另外,观察到最渗透的粒度以随着介质速度的增加而降低,初始值范围为194至134nm。

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