Wibisono Yusuf, Fadila Cut Rifda, Saiful Saiful, Bilad Muhammad Roil
Department of Bioprocess Engineering, Faculty of Agricultural Technology, Brawijaya University, Malang 65141, Indonesia.
Department of Chemistry, Faculty of Mathematics and Natural Sciences, Syiah Kuala University, Banda Aceh 23111, Indonesia.
Polymers (Basel). 2020 Oct 28;12(11):2516. doi: 10.3390/polym12112516.
Since the widespread of severe acute respiratory syndrome of coronavirus 2 (SARS-CoV-2) disease, the utilization of face masks has become omnipresent all over the world. Face masks are believed to contribute to an adequate protection against respiratory infections spread through micro-droplets among the infected person to non-infected others. However, due to the very high demands of face masks, especially the N95-type mask typically worn by medical workers, the public faces a shortage of face masks. Many papers have been published recently that focus on developing new and facile techniques to reuse and reinforce commercially available face masks. For instance, the N95 mask uses a polymer-based (membrane) filter inside, and the filter membrane can be replaced if needed. Another polymer sputtering technique by using a simple cotton candy machine could provide a cheap and robust solution for face mask fabrication. This review discuss the novel approaches of face mask reuse and reinforcement specifically by using membrane-based technology. Tuning the polymeric properties of face masks to enhance filterability and virus inactivity is crucial for future investigation.
自严重急性呼吸综合征冠状病毒2(SARS-CoV-2)疾病广泛传播以来,口罩的使用在全球无处不在。口罩被认为有助于充分防护通过微滴在感染者与未感染者之间传播的呼吸道感染。然而,由于对口罩的需求量极大,尤其是医护人员通常佩戴的N95型口罩,公众面临口罩短缺的问题。最近发表了许多论文,专注于开发新的简便技术来重复使用和增强市售口罩。例如,N95口罩内部使用基于聚合物的(膜)过滤器,如有需要,过滤膜可以更换。另一种利用简单棉花糖机的聚合物溅射技术可为口罩制造提供一种廉价且耐用的解决方案。本综述讨论了专门利用基于膜的技术对口罩进行重复使用和增强的新方法。调整口罩的聚合物特性以提高过滤性和病毒灭活能力对未来的研究至关重要。