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具有双峰结构的高效可重复使用的聚酰胺-56纳米纤维/网膜用于空气过滤。

Efficient and reusable polyamide-56 nanofiber/nets membrane with bimodal structures for air filtration.

作者信息

Liu Bowen, Zhang Shichao, Wang Xueli, Yu Jianyong, Ding Bin

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.

Nanomaterials Research Center, Modern Textile Institute, Donghua University, Shanghai 200051, China.

出版信息

J Colloid Interface Sci. 2015 Nov 1;457:203-11. doi: 10.1016/j.jcis.2015.07.019. Epub 2015 Jul 10.

Abstract

Nanofibrous media that both possess high airborne particle interception efficiency and robust air permeability would have broad technological implications for areas ranging from individual protection and industrial security to environmental governance; however, creating such filtration media has proved extremely challenging. Here we report a strategy to construct the bio-based polyamide-56 nanofiber/nets (PA-56 NFN) membranes with bimodal structures for effective air filtration via one-step electrospinning/netting. The PA-56 membranes are composed of completely covered two-dimensional (2D) ultrathin (∼20 nm) nanonets which are optimized by facilely regulating the solution concentration, and the bonded scaffold fibers constructed cavity structures which are synchronously created by using the CH3COOH inspiration. With integrated properties of small aperture, high porosity, and bonded scaffold, the resulting PA-56 NFN membranes exhibit high filtration efficiency of 99.995%, low pressure drop of 111 Pa, combined with large dust holding capacity of 49 g/m(2) and dust-cleaning regeneration ability, for filtrating ultrafine airborne particles in the most safe manner involving sieving principle and surface filtration. The successful synthesis of PA-56 NFN medium would not only make it a promising candidate for air filtration, but also provide new insights into the design and development of nanonet-based bimodal structures for various applications.

摘要

兼具高空气传播颗粒拦截效率和强大透气性能的纳米纤维介质,在从个人防护、工业安全到环境治理等诸多领域都将具有广泛的技术意义;然而,制造这样的过滤介质已被证明极具挑战性。在此,我们报告一种通过一步电纺/织网构建具有双峰结构的生物基聚酰胺-56纳米纤维/网(PA-56 NFN)膜以实现高效空气过滤的策略。PA-56膜由完全覆盖的二维(2D)超薄(约20纳米)纳米网组成,这些纳米网通过轻松调节溶液浓度进行优化,并且通过使用CH3COOH激发同步生成的粘结支架纤维构建了腔室结构。所得的PA-56 NFN膜具有小孔径、高孔隙率和粘结支架的综合特性,表现出99.995%的高过滤效率、111 Pa的低压降,以及49 g/m²的大容尘量和清灰再生能力,以涉及筛分原理和表面过滤的最安全方式过滤超细空气传播颗粒。PA-56 NFN介质的成功合成不仅使其成为空气过滤的有前途候选材料,还为基于纳米网的双峰结构在各种应用中的设计和开发提供了新的见解。

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