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首页> 外文期刊>Environmental Science: Nano >Large-scale preparation of micro-gradient structured sub-micro fibrous membranes with narrow diameter distributions for high-efficiency air purification
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Large-scale preparation of micro-gradient structured sub-micro fibrous membranes with narrow diameter distributions for high-efficiency air purification

机译:具有窄直径分布的微梯度结构亚微纤维膜的大规模制备,用于高效空气净化

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摘要

Herein, micro-gradient structured polyacrylonitrile (PAN) sub-micro fibrous membranes composed of coarse, medium, and fine (C, M, and F) fiber layers with different fiber diameters in the submicron scale range were fabricated via one-step free surface electrospinning with large-scale productivity and demonstrated for the first time as air filters, respectively. The sub-micro fibers with narrow diameter distributions of each layer were regulated precisely in the micro-gradient structure; moreover, the influence of the arrangement of the layers on the performance of the membranes was analyzed systematically, among which the F-M-C membrane displayed optimal performance (filtration efficiency of 99.28% and pressure drop of 55.86 Pa). Additionally, the filtration performance of the composite membranes could be further improved to an efficiency of 99.99% and a pressure drop of 92 Pa only by the surface modification of the finest fibrous layer. Furthermore, the micro-gradient structures of the membranes could be regulated and arbitrarily fabricated with different gradient degrees, even at the nanometer level. By polymer blending, the upgraded micro-gradient-structured filter (the average fiber diameters of each layer were only 200, 110 and 70 nm) possessed similar to 1 mu m average pore size, a large specific surface area (53.12 m(2) g(-1)) and an excellent efficiency of 99.97% (F-M-C) with a resistance of 106.8 Pa, superior to those of a homogeneous PAN filter. The results suggest that micro-gradient-structured fibrous membranes composed of C, M, and F layers with tortuous channels can efficiently separate different sized PMs from the airstream through capturing mechanisms. The cost-effective micro-gradient filter media produced by one-step free surface electrospinning is promising for industrial production and commercial applications.
机译:在此,通过一步式自由表面制造由亚微米级范围内具有不同纤维直径的粗,培养基和细(C,M,M和F)纤维层组成的微梯度结构的聚丙烯腈(PAN)亚微纤维层。静电纺丝,具有大规模的生产率,并分别作为空气过滤器首次展示。在微梯度结构中精确地调节具有每层窄直径分布的亚微纤维;此外,系统地分析了层对膜性能对膜性能的影响,其中F-M-C膜显示出最佳性能(过滤效率为99.28%,压降55.86Pa)。另外,复合膜的过滤性能可以进一步改善为99.99%的效率,并且仅通过最优质的纤维层的表面改性的92Pa的压降。此外,即使在纳米水平,也可以对膜的微梯度结构进行调节,并在不同的梯度度下被任意制造。通过聚合物混合,升级的微梯度结构过滤器(每层的平均纤维直径仅为200,1110和70nm),其平均孔径平均孔径为1μm(53.12m(2) G(1))和优异的效率为99.97%(FMC),电阻为106.8Pa,优于均匀平移过滤器。结果表明,由C,M和F层组成的微梯度结构纤维膜,其具有曲折通道可以通过捕获机构将不同尺寸的PM与气流有效地分离。一步式自由表面静电纺丝生产的经济高效的微梯度过滤介质是工业生产和商业应用的希望。

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  • 来源
    《Environmental Science: Nano》 |2019年第12期|共19页
  • 作者单位

    Donghua Univ Coll Text Key Lab Text Sci &

    Technol Minist Educ Shanghai 201620 Peoples R China;

    Donghua Univ Coll Text Key Lab Text Sci &

    Technol Minist Educ Shanghai 201620 Peoples R China;

    Donghua Univ Coll Text Key Lab Text Sci &

    Technol Minist Educ Shanghai 201620 Peoples R China;

    Donghua Univ Coll Text Key Lab Text Sci &

    Technol Minist Educ Shanghai 201620 Peoples R China;

    Donghua Univ Coll Text Key Lab Text Sci &

    Technol Minist Educ Shanghai 201620 Peoples R China;

    Donghua Univ Coll Text Key Lab Text Sci &

    Technol Minist Educ Shanghai 201620 Peoples R China;

    Donghua Univ Innovat Ctr Text Sci &

    Technol Shanghai 201620 Peoples R 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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