School of Architecture and Urban Planning, Nanjing University, Nanjing, China.
Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.
Indoor Air. 2017 Nov;27(6):1190-1200. doi: 10.1111/ina.12391. Epub 2017 May 17.
Recently, many nanofiber films have been developed for air filtration applications. These films exhibit high PM (particles with aerodynamic diameters less than 2.5 μm) removal efficiency and relatively low air resistance. Thus, coating window screens with nanofiber films may be able to mitigate residential exposure to PM of outdoor origin. This study developed a method for assessing the performance of nanofiber window screens in reducing residential exposure to PM of outdoor origin in Beijing. The results show that the use of selected nanofiber window screens all the time throughout the year can reduce the mean value of the annual average indoor PM of outdoor origin by 64%-66% for Beijing residences. However, the mean value of annual harmonic average air exchange rate when the windows are open was also reduced from 2.34 h to 0.27-0.35 h , which is far below the national standard. If the nanofiber window screens were used only when the outdoor PM pollution was severe, the screens had less of an impact on residential natural ventilation, but the national standard still could not be met. Hence, more efforts are needed to further reduce the air resistance of nanofiber window screens in order to ensure proper residential ventilation.
最近,已经开发出许多用于空气过滤应用的纳米纤维膜。这些薄膜具有高 PM(空气动力学直径小于 2.5μm 的颗粒)去除效率和相对较低的空气阻力。因此,用纳米纤维膜涂覆窗户纱窗可能能够减轻居民对室外来源 PM 的暴露。本研究开发了一种评估纳米纤维纱窗在减少北京居民对室外来源 PM 的暴露的性能的方法。结果表明,在北京居民中,全年始终使用选定的纳米纤维纱窗可以将室外来源的年平均室内 PM 的平均值降低 64%-66%。然而,当窗户打开时,年谐波平均空气交换率的平均值也从 2.34 h 降低到 0.27-0.35 h,远低于国家标准。如果仅在室外 PM 污染严重时使用纳米纤维纱窗,对居民自然通风的影响较小,但仍未达到国家标准。因此,需要进一步降低纳米纤维纱窗的空气阻力,以确保适当的居民通风。