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Experimental investigation on continuous filtration of sub-micron aerosol by filter composed of dual-layers including a nanofiber layer

机译:含纳米纤维层的双层滤膜连续过滤亚微米气溶胶的实验研究

摘要

This study concerns filtration of sub-micron aerosol using dual nanofiber and microfiber layers. The first part compares the filtration performance of nanofiber (300 nm diameter fibers) and microfiber (1.8 m diameter fibers) filters. Test aerosol is sodium chloride (NaCl) particulates ranging from 41 to 514 nm generated from atomization. Experimental results show that the fractional efficiency and quality factor of nanofiber filter is higher than microfiber filter, but microfiber filter has lower rate of increase in pressure drop under continuous loading. The second part aims to utilize the dust holding capacity of microfiber filter to relieve the rapid clogging and skin formation of nanofiber filter. In this work, three types of filters formed by stacking of microfiber and nanofiber layers are tested to investigate the loading characteristics of inhomogeneous dual-layer fibrous filter under the challenge of sub-micron NaCl aerosol. Experimental results show that the filter with microfiber layer upstream of nanofiber layer has a lower increase rate in pressure drop than the filter with constituent layers in reversed arrangement. The semi-empirical model of polydisperse aerosol loading, as modified from the version of monodisperse aerosol, predicts deposition profile across filter depth that explains the pressure drop results. Serving two purposes, the dual-layer filter with microfiber (upstream) and nanofiber (downstream) is able to utilize the strength of nanofibers in clean stage filtration and microfibers in loaded stage filtration. Moreover, a lower pressure drop increase implies that the filter does not require frequent cleaning by backpulses of compressed air, which might destroy the fragile nanofibers.
机译:这项研究涉及使用双纳米纤维和超细纤维层过滤亚微米气溶胶。第一部分比较了纳米纤维(直径300 nm的纤维)和超细纤维(直径1.8 m的纤维)过滤器的过滤性能。测试气雾剂是雾化产生的氯化钠(NaCl)微粒,范围从41到514 nm。实验结果表明,纳米纤维滤池的分数效率和品质因数均高于微纤维滤池,但在连续负载下,微纤维滤池的压降增加率较低。第二部分旨在利用超细纤维过滤器的容尘量来缓解纳米纤维过滤器的快速堵塞和皮肤形成。在这项工作中,测试了由微纤维和纳米纤维层堆叠形成的三种类型的过滤器,以研究在亚微米NaCl气溶胶的作用下非均质双层纤维过滤器的负载特性。实验结果表明,与具有反向排列的组成层的过滤器相比,在纳米纤维层上游具有微纤维层的过滤器的压降增加率更低。从单分散气溶胶的版本修改而来的多分散气溶胶装载量的半经验模型可预测整个过滤器深度的沉积曲线,从而解释了压降的结果。具有两个目的,具有超细纤维(上游)和纳米纤维(下游)的双层过滤器能够利用纳米纤维在清洁阶段过滤中的优势和超细纤维在负载阶段过滤中的优势。此外,较低的压降增加意味着过滤器不需要通过压缩空气的反冲来频繁清洁,这可能会破坏易碎的纳米纤维。

著录项

  • 作者

    Leung WWF; Hung CH; Yuen PT;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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