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Effect of face velocity, nanofiber packing density and thickness on filtration performance of filters with nanofibers coated on a substrate

机译:面速度,纳米纤维堆积密度和厚度对在基材上涂覆纳米纤维的过滤器的过滤性能的影响

摘要

The objective of this study is to evaluate the effect of face velocity, nanofiber packing density and nanofiber layer thickness on filtration efficiency and pressure drop of filters with nanofibers coated on a substrate. The substrate is a non-woven microfiber medium with negligible filtration efficiency and pressure drop as compared to nanofiber layer. The nanofiber layer is composed of electrospun polyethylene oxide nanofibers with mean diameter equals to 208 nm. Test aerosol is sodium chloride with size ranging from 50 to 480 nm. Experimental results show that the most penetrating particle size decreases from 140 to 90 nm when nanofiber packing density increases from 3.9 to 36 × 10-3. When face velocity is increased from 5 to 10 cm s-1, the filtration efficiency generally decreases, and the reduction becomes larger at smaller particle sizes especially for those below 100 nm. By maintaining nanofiber packing density at 8.7 × 10-2 and almost triple the nanofiber layer thickness, the most penetrating particle size decreases slightly from 140 to 120 nm. This suggests nanofiber layer thickness has less prominent effect on most penetrating particle size than nanofiber packing density. By adding more nanofibers on microfiber substrate in a single layer especially under high fiber packing, the pressure drop across the filter elevates without significantly improving the filtration efficiency exhibiting a diminishing return behavior. Hence, the method of "multi-layering" is proposed to fabricate nanofiber filter with greatly reduced pressure drop. This is advantageous for high efficiency applications with nanofibers of high packing density.
机译:这项研究的目的是评估表面速度,纳米纤维堆积密度和纳米纤维层厚度对将纳米纤维涂覆在基材上的过滤器的过滤效率和压降的影响。基材是非织造超细纤维介质,与纳米纤维层相比,其过滤效率和压降可忽略不计。纳米纤维层由电纺聚环氧乙烷纳米纤维组成,平均直径等于208 nm。测试气雾剂为氯化钠,尺寸范围为50至480 nm。实验结果表明,当纳米纤维堆积密度从3.9增加到36×10-3时,最穿透的粒径从140 nm减小到90 nm。当表面速度从5 cm s-1增加到10 cm s-1时,过滤效率通常会降低,并且在较小的颗粒尺寸(特别是对于100 nm以下的颗粒)下,降低的幅度会更大。通过将纳米纤维的堆积密度保持在8.7×10-2,并且纳米纤维层的厚度几乎增加了三倍,最穿透的粒径从140纳米减小到120纳米。这表明纳米纤维层厚度比大多数纳米纤维堆积密度对大多数穿透的粒度没有明显的影响。通过在单层中,特别是在高纤维堆积下,在微纤维基材上添加更多的纳米纤维,在不显着提高过滤效率的情况下,过滤器两端的压降会升高,而回流性能却下降。因此,提出了“多层”的方法来制造压降大大降低的纳米纤维过滤器。这对于具有高堆积密度的纳米纤维的高效应用是有利的。

著录项

  • 作者

    Leung WWF; Hung CH; Yuen PT;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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