Hu Shui, Tian Hongchi, Zhang Shijia, Wang Dan, Gong Guozhuo, Yue Weihua, Liu Keyang, Hong Song, Wang Rui, Yuan Qingqing, Lu Yonglai, Wang Dong, Zhang Liqun, Chen Jianfeng
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.
Dawn Polymer (Beijing) Technology Co., Ltd., Beijing 101599, China.
Engineering (Beijing). 2022 Feb;9:101-110. doi: 10.1016/j.eng.2021.07.022. Epub 2021 Nov 3.
The coronavirus disease 2019 (COVID-19) pandemic has caused a surge in demand for face masks, with the massive consumption of masks leading to an increase in resource-related and environmental concerns. In this work, we fabricated meltblown polypropylene (mb-PP)-based high-performance planar face masks and investigated the effects of six commonly used disinfection methods and various mask-wearing periods on the reusability of these masks. The results show that, after three cycles of treatment using hot water at 70 °C for 30 min, which is one of the most scalable, user-friendly methods for viral disinfection, the particle filtration efficiency (PFE) of the mask remained almost unchanged. After mask wearing for 24 h and subsequent disinfection using the same treatment procedures, the PFE decreased to 91.3%; the average number of bacterial and fungal colonies was assessed to be 9.2 and 51.6 colony-forming units per gram (CFU∙g ), respectively; and coliform and pyogenic bacteria were not detected. Both the PFE and the microbial indicators are well above the standard for reusable masks after disinfection. Schlieren photography was then used to assess the capabilities of used and disinfected masks during use; it showed that the masks exhibit a high performance in suppressing the spread of breathed air.
2019年冠状病毒病(COVID-19)大流行导致口罩需求激增,口罩的大量消耗引发了与资源和环境相关的担忧。在这项工作中,我们制造了基于熔喷聚丙烯(mb-PP)的高性能平面口罩,并研究了六种常用消毒方法以及不同佩戴时长对这些口罩可重复使用性的影响。结果表明,在使用70°C热水处理30分钟这一最具扩展性、用户友好的病毒消毒方法进行三个循环的处理后,口罩的颗粒过滤效率(PFE)几乎保持不变。在佩戴口罩24小时并随后使用相同处理程序进行消毒后,PFE降至91.3%;每克细菌和真菌菌落的平均数分别评估为9.2和51.6菌落形成单位(CFU∙g),且未检测到大肠菌群和化脓性细菌。PFE和微生物指标均远高于消毒后可重复使用口罩的标准。然后使用纹影摄影来评估使用过并消毒后的口罩在使用过程中的性能;结果表明,这些口罩在抑制呼出空气传播方面表现出高性能。