Department of Materials and Textile Engineering, Faculty of Engineering, Razi University, Kermanshah 6714414971, Iran.
Saint-Gobain Inc., Research and Development Supervisor, Nonwoven Abrasives, McAllen, TX 78503, United States of America.
Sci Total Environ. 2021 Dec 1;798:149233. doi: 10.1016/j.scitotenv.2021.149233. Epub 2021 Jul 24.
Providing the greater public with the current coronavirus (SARS-CoV-2) vaccines is time-consuming and research-intensive; intermediately, some essential ways to reduce the transmission include social distancing, personal hygiene, testing, contact tracing, and universal masking. The data suggests that universal masking, especially using multilayer surgical face masks, offers a powerful efficacy for indoor places. These layers have different functions including antiviral/antibacterial, fluid barrier, particulate and bacterial filtration, and fit and comfort. However, universal masking poses a serious environmental threat since billions of them are disposed on a daily basis; the current coronavirus disease (COVID-19) has put such demands and consequences in perspective. This review focuses on surgical face mask structures and classifications, their impact on our environment, some of their desirable functionalities, and the recent developments around their biodegradability. The authors believe that this review provides an insight into the fabrication and deployment of effective surgical face masks, and it discusses the utilization of multifunctional structures along with biodegradable materials to deal with future demands in a more eco-friendly fashion.
为广大公众提供当前的冠状病毒(SARS-CoV-2)疫苗既耗时又需要大量研究;在此期间,减少传播的一些基本方法包括保持社交距离、个人卫生、检测、接触者追踪和普遍戴口罩。数据表明,普遍戴口罩,特别是使用多层外科口罩,对室内场所具有强大的功效。这些层具有不同的功能,包括抗病毒/抗菌、流体阻隔、颗粒和细菌过滤以及贴合和舒适度。然而,由于每天要处理数十亿个口罩,普遍戴口罩对环境造成了严重威胁;当前的冠状病毒病(COVID-19)使这些需求和后果变得明显。这篇综述重点介绍了外科口罩的结构和分类、它们对环境的影响、它们的一些理想功能,以及最近在其可生物降解性方面的发展。作者认为,这篇综述提供了对外科口罩的制造和使用的深入了解,并讨论了利用多功能结构和可生物降解材料来以更环保的方式应对未来的需求。