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Filtration of nano-aerosol using nanofiber filter under low Peclet number and transitional flow regime

机译:在低Peclet数和过渡流态下使用纳米纤维过滤器过滤纳米气溶胶

摘要

The objective of this study is to investigate the filtration of nano-aerosols (50-500 nm) using nanofiber filter for strong diffusion capture wherein Peclet number Pe drops to single digit and even below unity. The effect of strong slip flow or transitional flow, with the dimension of the flow domain comparable in order of magnitude to the distance of mean-free-path of air molecules (i.e. Knudsen number Knf of order one), has also been investigated with nanofiber diameter reducing below 100 nm. Also, we examined implications due to use of very small diameter nanofibers. Nanofiber filters are made by electrospinning Nylon 6 (N6) nanofibers on microfiber substrate. The diameter of nanofibers electrospun from 12, 20, and 24% N6 solution are 94, 185, and 220 nm, respectively (corresponding Knf of 1.44, 0.71, and 0.62). Previous studies showed that the conventional semi-empirical correlation as developed by Payet et al. [1] on single fiber efficiency due to diffusion mechanism (ηD) as developed from moderate slip flow assumption offers good agreement with experimental results even when Knf increases to 0.65 (i.e. transition flow regime) over Pe starting from 40 and dropping to 6. In this study, under large slip flow (Knf equals to 1.44), we show that Payet's correlation on ηD deviating from measurements when Pe is below 10 and the deviation gets worse when Pe drops below unity. Therefore, Payet's correlation, pertaining only to moderate diffusion capture, underpredicts the single fiber capture efficiency for nano-particle or ultrafine particle (sized below 100 nm according to ISO Standard [2]), which may lead to respiratory [3] and cardiovascular [4] problems or diseases. As such, an improved empirical correlation on ηD should be established based on new measurement to accurately assess the filter performance on these important particles for selection and sizing of filters in exercising preventive measures. In the study of effect of fiber diameter on capture efficiency and pressure drop, reducing df from 185 to 94 nm facilitates the filtration of 50-500 nm nano-aerosol, but unfortunately elevates the pressure drop (ΔP). The benefit-to-cost effect is judged by the quality factor (QF) which should be higher for filter with better performance. The QF of a filter with 185-nm nanofibers is higher than the one with 94-nm nanofibers when filtering 50-90 nm nano-aerosol, and vice versa when filtering 100-380 nm nano-aerosol. Filtration efficiency increases when nanofiber basis weight (W) increases from 0.042 to 0.333 g m-2. However, the QF drops rapidly when W increases from 0.042 to 0.085 g m-2, and decreases slowly from W = 0.085 g m-2 onwards to W = 0.333 g m-2. As such, for a high performance filter a multi-layer filter formed from stacking up of a series of low basis weight nanofiber layers, each independently supported, is more favorable over using a single-layer nanofiber filter with the same total basis weight.
机译:这项研究的目的是研究使用纳米纤维过滤器过滤纳米气溶胶(50-500 nm)以实现强扩散捕获,其中Peclet数Pe下降至个位数甚至低于1。还已经用纳米纤维研究了强滑流或过渡流的影响,其流动域的尺寸在数量级上可与空气分子的平均自由程的距离(即Knudsen数Knf)相比较。直径减小到100 nm以下。另外,我们研究了由于使用非常小直径的纳米纤维而产生的影响。纳米纤维过滤器是通过将尼龙6(N6)纳米纤维静电纺丝在微纤维基材上制成的。由12%,20%和24%N6溶液电纺而成的纳米纤维的直径分别为94、185和220 nm(对应的Knf为1.44、0.71和0.62)。先前的研究表明,Payet等人开发的常规半经验相关性。 [1]由于扩散机制(ηD)引起的单纤维效率是由中等滑流假设得出的,即使Knf在Pe从40开始下降到6的Knf增加到0.65(即过渡流态)时,也与实验结果很好地吻合。这项研究在较大的滑流(Knf等于1.44)下显示,当Pe小于10时,Payet与ηD的相关性偏离测量值,而当Pe小于1时,偏差变得更差。因此,Payet的相关性仅与中等扩散捕获有关,它低估了纳米颗粒或超细颗粒(根据ISO标准[2]尺寸小于100 nm)的单纤维捕获效率,这可能导致呼吸[3]和心血管[ 4]问题或疾病。因此,应基于新的测量结果建立关于ηD的改进的经验相关性,以准确评估这些重要颗粒上的过滤器性能,以在执行预防措施时选择和确定过滤器尺寸。在研究纤维直径对捕集效率和压降的影响时,将df从185降低至94 nm有助于过滤50-500 nm的纳米气溶胶,但不幸的是会增加压降(ΔP)。成本效益比由品质因数(QF)判断,对于性能更好的滤波器,该因数应更高。当过滤50-90 nm纳米气溶胶时,具有185 nm纳米纤维的过滤器的QF高于使用94 nm纳米纤维的过滤器,而当过滤100-380 nm纳米气溶胶时,其QF更高。当纳米纤维基重(W)从0.042增加到0.333 g m-2时,过滤效率增加。但是,当W从0.042 g m-2增加到0.085 g m-2时,QF迅速下降,而从W = 0.085 g m-2向前缓慢下降到W = 0.333 g m-2。这样,对于高性能过滤器,与使用具有相同总基重的单层纳米纤维过滤器相比,由分别独立支撑的一系列低基重纳米纤维层的堆叠形成的多层过滤器更有利。

著录项

  • 作者

    Hung CH; Leung WWF;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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