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Filter Quality of Pleated Filter Cartridges

机译:褶式滤筒的过滤质量

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摘要

The performance of dust cartridge filters commonly used in dust masks and in room ventilation depends both on the collection efficiency of the filter material and the pressure drop across the filter. Currently, the optimization of filter design is based only on minimizing the pressure drop at a set velocity chosen by the manufacturer. The collection efficiency, an equally important factor, is rarely considered in the optimization process. In this work, a filter quality factor, which combines the collection efficiency and the pressure drop, is used as the optimization criterion for filter evaluation. Most respirator manufacturers pleat the filter to various extents to increase the filtration area in the limit space within the dust cartridge. Six sizes of filter holders were fabricated to hold just one pleat of filter, simulating six different pleat counts, ranging from 0.5 to 3.33 pleats cm−1. The possible electrostatic charges on the filter were removed by dipping in isopropyl alcohol, and the air velocity is fixed at 100 cm s−1. Liquid dicotylphthalate particles generated by a constant output atomizer were used as challenge aerosols to minimize particle loading effects. A scanning mobility particle sizer was used to measure the challenge aerosol number concentrations and size distributions upstream and downstream of the pleated filter. The pressure drop across the filter was monitored by using a calibrated pressure transducer. The results showed that the performance of pleated filters depend not only on the size of the particle but also on the pleat count of the pleated filter. Based on filter quality factor, the optimal pleat count (OPC) is always higher than that based on pressure drop by about 0.3–0.5 pleats cm−1. For example, the OPC is 2.15 pleats cm−1 from the standpoint of pressure drop, but for the highest filter quality factor, the pleated filter needed to have a pleat count of 2.65 pleats cm−1 at particle diameter of 122 nm. From the aspect of filter quality factor, this study suggests that the respirator manufacturers should add ∼0.5 pleats cm−1 to the OPC derived from the generalized correlation curve for pleated filter design based on minimum pressure drop.
机译:防尘口罩和室内通风中常用的集尘盒式过滤器的性能取决于过滤器材料的收集效率和整个过滤器上的压降。当前,过滤器设计的优化仅基于使制造商选择的设定速度下的压降最小。在优化过程中很少考虑收集效率(同等重要的因素)。在这项工作中,将收集效率和压降相结合的过滤器品质因数用作过滤器评估的优化标准。大多数呼吸器制造商都在不同程度上打褶过滤器,以增加集尘盒内极限空间内的过滤面积。制造了六种尺寸的过滤器支架,仅可容纳一个过滤器褶皱,模拟了六个不同的褶皱计数,范围从0.5到3.33褶皱cm -1 。通过浸入异丙醇除去过滤器上可能的静电荷,并将风速固定为100 cm s -1 。由恒定输出雾化器生成的液态邻苯二甲酸二乙酯基颗粒用作挑战性气溶胶,以最大程度地降低颗粒负载效应。使用扫描迁移率粒度仪测量褶状过滤器上游和下游的挑战性气溶胶浓度和粒度分布。通过使用校准的压力传感器来监测过滤器两端的压降。结果表明,褶式过滤器的性能不仅取决于颗粒的尺寸,还取决于褶式过滤器的褶数。根据过滤器的品质因数,最佳褶皱数(OPC)始终比基于压降的最佳褶皱数高约0.3–0.5褶皱cm -1 。例如,从压降的角度来看,OPC为2.15褶cm -1 ,但是对于最高的过滤器品质因数,打褶过滤器的褶数需要为2.65褶cm -直径为122 nm时为1 。从过滤器品质因数的角度来看,该研究表明,呼吸器制造商应根据从最小压降得出的褶皱式过滤器设计的广义相关曲线,向OPC添加约0.5褶cm -1

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  • 来源
    《Annals of Occupational Hygiene》 |2008年第3期|p.207-212|共6页
  • 作者单位

    1Institute of Occupational Safety and Health, Council of Labor Affairs, No. 99, Lane 407, Hengke Road, Shijr City, Taipei County, Taiwan 2Department of Architecture, National Cheng-Kung University, No. 1, University Road, Tainan 701, Taiwan 3Institute of Occupational Medicine and Industrial Hygiene, College of Public Health, National Taiwan University, 17 Xuzhou Road, Room 718, Taipei 10055, Taiwan;

  • 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
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