Raeiszadeh Milad, Adeli Babak
Department of Chemical and Biological Engineering, The University of British Columbia, Vancouver, BC V6T 1Z4, Canada.
Department of Research and Development, Acuva Technologies, Burnaby, BC V5J 5G5, Canada.
ACS Photonics. 2020 Oct 14;7(11):2941-2951. doi: 10.1021/acsphotonics.0c01245. eCollection 2020 Nov 18.
The global health-threatening crisis from the COVID-19 pandemic, caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), highlights the scientific and engineering potentials of applying ultraviolet (UV) disinfection technologies for biocontaminated air and surfaces as the major media for disease transmission. Nowadays, various environmental public settings worldwide, from hospitals and health care facilities to shopping malls and airports, are considering implementation of UV disinfection devices for disinfection of frequently touched surfaces and circulating air streams. Moreover, the general public utilizes UV sterilization devices for various surfaces, from doorknobs and keypads to personal protective equipment, or air purification devices with an integrated UV disinfection technology. However, limited understanding of critical UV disinfection aspects can lead to improper use of this promising technology. In this work, fundamentals of UV disinfection phenomena are addressed; furthermore, the essential parameters and protocols to guarantee the efficacy of the UV sterilization process in a human-safe manner are systematically elaborated. In addition, the latest updates from the open literature on UV dose requirements for incremental log removal of SARS-CoV-2 are reviewed remarking the advancements and existing knowledge gaps. This study, along with the provided illustrations, will play an essential role in the design and fabrication of effective, reliable, and safe UV disinfection systems applicable to preventing viral contagion in the current COVID-19 pandemic, as well as potential future epidemics.
由严重急性呼吸综合征冠状病毒2(SARS-CoV-2)引发的COVID-19大流行所带来的全球健康威胁危机,凸显了应用紫外线(UV)消毒技术对作为疾病传播主要媒介的生物污染空气和表面进行消毒的科学与工程潜力。如今,全球各地的各种环境公共场所,从医院和医疗保健设施到购物中心和机场,都在考虑采用紫外线消毒设备对经常接触的表面和循环气流进行消毒。此外,普通公众也在将紫外线杀菌设备用于从门把手、键盘到个人防护装备等各种表面,或者使用集成了紫外线消毒技术的空气净化设备。然而,对紫外线消毒关键方面的了解有限可能导致对这一有前景的技术使用不当。在这项工作中,阐述了紫外线消毒现象的基本原理;此外,还系统地阐述了以确保对人体安全的方式保证紫外线杀菌过程有效性的基本参数和规程。此外,还对公开文献中关于SARS-CoV-2对数减少增量的紫外线剂量要求的最新进展进行了综述,指出了进展情况和现有的知识差距。这项研究以及所提供的插图,将在设计和制造适用于在当前COVID-19大流行以及未来可能的流行病中预防病毒传播的有效、可靠和安全的紫外线消毒系统方面发挥重要作用。