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首页> 外文期刊>Separation and Purification Technology >Polymer/MOP-derived multilayer fibrous membranes for moisture-wicking and efficient capturing both fine and ultrafine airborne particles
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Polymer/MOP-derived multilayer fibrous membranes for moisture-wicking and efficient capturing both fine and ultrafine airborne particles

机译:聚合物/拖把衍生的多层纤维膜,用于防潮,捕获良好和超细空气传播颗粒

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摘要

Particulate matter (PM)-induced air pollution has become a serious threat to public health in many regions. There is, therefore, a need for development of advanced respirator materials that can efficiently capture PM and also exhibit both low breathing resistance and good moisture wicking properties to ensure physiological comfort of the wearers. Herein, we report a new type of multilayer membranes that exhibit excellent filtration efficiencies for PM of various sizes, low air resistance and good directional moisture transport properties. We incorporated a type of metal-organic framework, ZIF-8, into polyacrylonitrile (PAN) to prepare microfibers with high surface roughness, and altematingly stacked layers of rough microfibers with layers of PAN nanofibers via electrospinning, resulting in multi-level structured membranes. Moreover, subsequent acid and base treatments could not only tailor the hydrophilicity of fiber surfaces, but also induce multiscale surface roughness, facilitating both moisture wicking and PM adsorption. This allowed us to construct a unique multilayer membrane composed of a super-hydrophilic outer layer made of PAN fibers with multiscale surface roughness, a hydrophilic composite intermediate layer consisting of porous PAN-ZIF-8 microfibers and PAN nanofibers, and a hydrophobic polystyrene fibrous inner layer, which could offer excellent directional moisture transport performance and a high water vapor transmission rate of 10.56 kg m(-2) d(-1) due to strong capillary force and push-pull effect More importantly, benefiting from the large specific surface area, rough fiber surface, and hierarchical pore structure, the membrane exhibits high removal efficiencies of 99.973% for 0.3-um particles and 99.99% for particles of other sizes, including the more harmful ultrafine particles, at a low pressure drop of 80.1 Pa. Moreover, the multilayer composite filter still maintains a high removal efficiency of 99.951% after continuous air purification for 48 h in a high PMzs concentration ( > 300 mu g m(-3)) environment. These make such membranes promising high-performance filtration media for respirator applications.
机译:颗粒物质(PM)诱导的空气污染已成为许多地区对公共卫生的严重威胁。因此,需要开发能够有效地捕获PM的先进呼吸器材料,并且还表现出低呼吸阻力和良好的防潮性能,以确保穿着者的生理舒适性。在此,我们报告了一种新型的多层膜,其表现出各种尺寸,低空气阻力和良好定向水分运输性能的优异过滤效率。我们将一种金属有机框架,ZIF-8纳入聚丙烯腈(锅)中,以制备具有高表面粗糙度的微纤维,并通过静电纺塑制备具有高表面粗糙度的微纤维,并通过静电纺丝,具有锅纳米纤维层的粗略微纤维层。导致多级结构膜。此外,随后的酸和碱处理不仅可以根据纤维表面的亲水性,而且诱导多尺度表面粗糙度,促进防潮和PM吸附。这使我们允许我们构建由具有多尺度表面粗糙度的PAN纤维制成的超亲水外层组成的独特的多层膜,其由多孔泛ZIF-8微纤维和锅纳纤维组成的亲水性复合中间层,以及疏水性聚苯乙烯纤维内膜由于强大的毛细力和推拉效果更重要,可以提供优异的定向水分输送性能和高水蒸气透射率为10.56千克M(-2)D(-1)的高水蒸气透射率,从大型比表面积受益,粗纤维表面和等级孔隙结构,膜具有99.973%的高温效率为99.973%,对于其他尺寸的颗粒,包括更有害的超细颗粒,在80.1Pa的低压下降下为99.99%。此外,多层复合过滤器在连续空气纯化以高pmzs浓度(> 300 mu g m(-3))环境。这些使这些膜具有对呼吸器应用的高性能过滤介质。

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