Wu Junwei, Zhou Hongjia, Zhou Jingyi, Zhu Xiao, Zhang Bowen, Feng Shasha, Zhong Zhaoxiang, Kong Lingxue, Xing Weihong
State Key Laboratory of Materials-Oriented Chemical Engineering, National Engineering Research Center for Special Separation Membrane, Nanjing Tech University, Nanjing 210009, China.
Jiangsu Jiulang High-Tech Co., Ltd, Nanjing 210009, China.
Chin J Chem Eng. 2021 Aug;36:1-9. doi: 10.1016/j.cjche.2020.10.022. Epub 2020 Nov 23.
The coronavirus disease 2019 (COVID-19) pandemic has led to a great demand on the personal protection products such as reusable masks. As a key raw material for masks, meltblown fabrics play an important role in rejection of aerosols. However, the electrostatic dominated aerosol rejection mechanism of meltblown fabrics prevents the mask from maintaining the desired protective effect after the static charge degradation. Herein, novel reusable masks with high aerosols rejection efficiency were fabricated by the introduction of spider-web bionic nanofiber membrane (nano cobweb-biomimetic membrane). The reuse stability of meltblown and nanofiber membrane mask was separately evaluated by infiltrating water, 75% alcohol solution, and exposing under ultraviolet (UV) light. After the water immersion test, the filtration efficiency of meltblown mask was decreased to about 79%, while the nanofiber membrane was maintained at 99%. The same phenomenon could be observed after the 75% alcohol treatment, a high filtration efficiency of 99% was maintained in nanofiber membrane, but obvious negative effect was observed in meltblown mask, which decreased to about 50%. In addition, after long-term expose under UV light, no filtration efficiency decrease was observed in nanofiber membrane, which provide a suitable way to disinfect the potential carried virus. This work successfully achieved the daily disinfection and reuse of masks, which effectively alleviate the shortage of masks during this special period.
2019年冠状病毒病(COVID-19)大流行导致对可重复使用口罩等个人防护产品的需求大增。作为口罩的关键原材料,熔喷织物在阻隔气溶胶方面发挥着重要作用。然而,熔喷织物以静电为主导的气溶胶阻隔机制使得口罩在静电荷衰减后无法维持所需的防护效果。在此,通过引入蜘蛛网仿生纳米纤维膜(纳米蛛网仿生膜)制备了具有高气溶胶阻隔效率的新型可重复使用口罩。通过用水、75%酒精溶液浸润以及在紫外线下照射,分别评估了熔喷和纳米纤维膜口罩的重复使用稳定性。水浸试验后,熔喷口罩的过滤效率降至约79%,而纳米纤维膜则保持在99%。75%酒精处理后也观察到同样的现象,纳米纤维膜保持了99%的高过滤效率,但熔喷口罩出现明显负面影响,降至约50%。此外,在紫外线下长期照射后,纳米纤维膜的过滤效率没有下降,这为消毒潜在携带的病毒提供了一种合适的方法。这项工作成功实现了口罩的日常消毒和重复使用,有效缓解了这一特殊时期口罩短缺的问题。