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首页> 外文期刊>Environmental Science: Nano >A low filtration resistance three-dimensional composite membrane fabricated via free surface electrospinning for effective PM_(2.5) capture
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A low filtration resistance three-dimensional composite membrane fabricated via free surface electrospinning for effective PM_(2.5) capture

机译:通过自由表面静电纺丝制备的低过滤性三维复合膜,用于有效PM_(2.5)捕获

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摘要

Ambient particulate matter (PM) pollution jeopardizes both the global climate and public health. Therefore, there is a need for a cost-effective and energy-efficient air filter. Herein, a low filtration resistance polyacry-lonitrile (PAN) three-dimensional composite membrane with high porosity was controllably fabricated via multi-jet free surface electrospinning. The composite nanofibrous membrane, composed of ternary structures including scaffold nanofibers, microspheres and thin nanofibers, was demonstrated as an air filter for the first time. The scaffold nanofibers constituted a stable skeletal framework in which the microspheres were embedded; the microspheres enlarged the inter-fiber voids thus greatly reducing the pressure drop, while thin nanofibers with diameters of 84 nm interwoven with the scaffold nanofibers improved the collision probability of the airborne particles and guaranteed a robust filtration performance without sacrificing filtration efficiency. Additionally, the embedded microspheres also significantly improved the mechanical properties of the membrane. The fabricated high porosity three-dimensional composite membrane exhibited high filtration efficiency (99.99%) and low pressure drop (126.7 Pa) to sodium chloride (NaCl) aerosol particles under an airflow velocity of 5.3 cm s~(-1). Furthermore, the as-prepared membrane demonstrated high PM2.5 filtration efficiency (99.24%) in a dynamic PM_(2.5) filtration system simulating the typical operation environment of an air filter. The low resistance three-dimensional composite membrane fabricated via free surface electrospinning is not only efficient for laboratory research but can also be applied to industrial production and in commercial applications.
机译:环境颗粒物质(PM)污染危害全球气候和公共卫生。因此,需要一种成本效益和节能的空气过滤器。这里,通过多喷射自由表面静电纺丝可控制具有高孔隙率的低过滤性抗性聚丙烯酰硅(PAN)三维复合膜。由包括支架纳米纤维,微球和薄纳米纤维包括支架纳米纤维,微球和薄纳米纤维的三元结构组成的复合纳米纤维膜作为空气过滤器。支架纳米纤维构成稳定的骨骼框架,其中嵌入了微球;微球扩大了纤维间空隙,从而大大减小了压降,而具有直径为84nm的薄纳米纤维与支架纳米纤维交织的直径改善了空气颗粒的碰撞概率,并在不牺牲过滤效率的情况下保证了鲁棒过​​滤性能。另外,嵌入的微球也显着改善了膜的机械性能。制造的高孔隙率三维复合膜在5.3cm S〜(-1)的气流速度下,在氯化钠(NaCl)气溶胶颗粒中表现出高滤液效率(99.99%)和低压下降(126.7Pa)。此外,制备的膜在模拟空气过滤器的典型操作环境的动态PM_(2.5)过滤系统中显示出高PM2.5过滤效率(99.24%)。通过自由表面静电纺丝制造的低电阻三维复合膜不仅是实验室研究的效率,而且还可以应用于工业生产和商业应用。

著录项

  • 来源
    《Environmental Science: Nano》 |2017年第4期|共12页
  • 作者单位

    Key Laboratory of Textile Science &

    Technology Ministry of Education College of Textiles Donghua University Shanghai 201620 China.;

    Key Laboratory of Textile Science &

    Technology Ministry of Education College of;

    Key Laboratory of Textile Science &

    Technology Ministry of Education College of Textiles Donghua University Shanghai 201620 China.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
  • 关键词

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