首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Ultra-light 3D nanofibre-nets binary structured nylon 6-polyacrylonitrile membranes for efficient filtration of fine particulate matter
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Ultra-light 3D nanofibre-nets binary structured nylon 6-polyacrylonitrile membranes for efficient filtration of fine particulate matter

机译:超轻型3D纳米纤维网二元结构尼龙6-聚丙烯腈膜,可有效过滤细颗粒物

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Particulate matter (PM) with an aerodynamic diameter of 2.5 micrometers or less (PM2.5), as one of the most hazardous air pollutants, has raised serious concerns for public health. Although individual or environmental protection could be achieved using conventional fibrous media, high performance filters usually rely on energy-intensive and bulky air-filtering media. In this work, an ultra-lightweight nylon 6-polyacrylonitrile nanofibre-nets binary (N6-PAN NNB) structured membrane, consisting of an ambigenous nanofibre framework through which run two-dimensional nano-nets, for sieving-enhanced capture of fine particles was demonstrated. The high coverage N6 nano-nets and low packing density of PAN nanofibres are certified as an efficient property promoter when the fibre spinning jet ratio of N6/PAN reaches 2/2, thereby improving the porosity, filtration efficiency, flow resistance, and stability. Upon exposure to 300 nm NaCl aerosol particles, the N6-PAN2/2 NNB membrane with a low basis weight of 2.94 g m(-2) exhibited high filtration efficiency (99.99%) and desirable quality factor (0.1163 Pa-1) even though under a high flow rate (90 L min(-1)), significantly better results than those of glass fibre and melt-blown polypropylene fibre-based media. Ultimately, three-dimensional computer simulation based on the images of N6-15 and N6-PAN(2/2) membranes after particle loading and filtration data via GeoDict were processed statistically through principal component analysis and then used to graphically express the particle deposition pattern change from surface filtration to deep bed filtration. We hope that the methodology and results presented here will encourage different approaches to diminish the negative impact of PM2.5 air pollution, in particular the frequency of haze occurrence in rapidly developing countries.
机译:空气动力学直径为2.5微米或更小的颗粒物(PM2.5)作为最危险的空气污染物之一,引起了公众健康的严重关注。尽管使用常规纤维介质可以实现个人或环境保护,但高性能过滤器通常依赖于能源密集型和笨重的空气过滤介质。在这项工作中,一种超轻型尼龙6聚丙烯腈纳米纤维网二元(N6-PAN NNB)结构的膜,该膜由一个模糊的纳米纤维骨架组成,二维纳米网穿过该骨架,用于筛分增强的细颗粒的捕获。演示。当N6 / PAN的纤维纺丝喷射比达到2/2时,高覆盖率的N6纳米网和低堆积密度的PAN纳米纤维被证明是有效的性能促进剂,从而提高了孔隙率,过滤效率,流动阻力和稳定性。暴露于300 nm NaCl气溶胶颗粒后,低基重2.94 gm(-2)的N6-PAN2 / 2 NNB膜表现出高过滤效率(99.99%)和理想的品质因数(0.1163 Pa-1),即使在高流量(90 L min(-1)),比玻璃纤维和熔喷聚丙烯纤维基介质要好得多。最终,基于主成分分析,对基于N6-15和N6-PAN(2/2)膜的图像进行三维计算机模拟,并通过GeoDict对颗粒数据进行过滤,然后对它们进行统计处理,然后用图形表示颗粒沉积模式从表面过滤改为深床过滤。我们希望这里介绍的方法和结果将鼓励采用不同的方法来减少PM2.5空气污染的负面影响,特别是在迅速发展的国家中霾的发生频率。

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