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Electret nanofibrous membrane with enhanced filtration performance and wearing comfortability for face mask

机译:电动纳米纤维膜,具有增强的过滤性能和佩戴面罩的舒适性

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摘要

Airborne particulate matter (PM) pollution has become a serious threat to human health, thus it is highly desired for a high-filtration-performance and good-wearing-comfort face mask. Herein, a highly breathable and thermal comfort filter medium consisting of electret polyethersulfone/barium titanate nanofibrous membrane (PES/BaTiO3 NFM) integrated on a nonwoven polypropylene substrate was developed. Benefiting from the high porosity and optimized injection charge energy, the PES/BaTiO3 membrane was endowed with a good air permeability of 743 mm s(-1), a modest water vapor permeability of 6.24 kg m(-2) d(-1), and an enhanced charge storage stability. In addition, the electret PES/BaTiO3 NFM1.5 medium with a low basis weight of 4.32 g m(-2) still shows a high filtration efficiency of 99.99% and a low pressure drop of 67 Pa after being treated at 200 degrees C for 45 min, which is better than that of commercial media. Moreover, 3D simulation based on the characters of composite membrane was processed to graphically express the airflow distribution during the filtration process. Significantly, the NFM1.5 with a high infrared (IR) transmittance of 93.4% led to an effective radiative cooling to human body radiation. This multifunctional fibrous medium design may provide new insights into the development of environmental adaptive protection materials. (C) 2018 Elsevier Inc. All rights reserved.
机译:空中颗粒物质(PM)污染已成为对人体健康的严重威胁,因此高滤网性能和良好舒适的面罩非常需要。这里,开发了一种高透气和热舒适过滤介质,其由集成在非织造聚丙烯基质上的驻极体聚醚砜/钛酸钡纳米纤维膜(PES / BATIO3 NFM)组成的高透气和热舒适过滤介质。受益于高孔隙率和优化的注射电荷能量,PES / BATIO3膜具有743mm S(-1)的良好透气性,适度的水蒸气渗透率为6.24kg m(-2)d(-1)和增强的电荷存储稳定性。此外,驻极体PES / BATIO3 NFM1.5培养基仍然显示出4.32克(-2)的低滤波效率为99.99%,在200摄氏度下处理后的67Pa的低压降分钟,比商业媒体更好。此外,加工基于复合膜特性的3D模拟以在过滤过程中以图形方式表达气流分布。值得注意的是,具有高红外线(IR)透射率为93.4%的NFM1.5导致了对人体辐射的有效辐射冷却。这种多功能纤维介质设计可以为环境自适应保护材料的开发提供新的见解。 (c)2018 Elsevier Inc.保留所有权利。

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