Department of Architecture and Civil Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong, China; Department of Building Environment and Energy Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.
Department of Architecture and Civil Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong, China.
J Hazard Mater. 2022 Oct 15;440:129791. doi: 10.1016/j.jhazmat.2022.129791. Epub 2022 Aug 18.
Cost-effective and safe air disinfection methods are urgently needed in various environmental public settings. A novel UVC-based disinfection system was designed and tested to provide a promising solution because of its effective inactivation of indoor bioaerosols at a low cost. UVC light-emitting diodes (UVC-LEDs) were utilized as the irradiation source. This system has the unique feature of rotating the UVC-LEDs to generate a "scanning irradiation" zone. Escherichia coli was aerosolized into an experimental chamber, exposed to UVC-LEDs, and sampled using an impactor. Effects of air mixing (well-mixed vs. poorly-mixed), transmission range (short vs. long), and irradiation mode (stationary vs. rotating) were evaluated. The system performs significantly well under the poorly-mixed condition. The results obtained from the short disinfection range indicate that the rotating UVC was approximately 70.5 % more effective than the stationary UVC for the poorly-mixed case. Further, we evaluated the performance of the long disinfection range under a poorly-mixed situation, and the disinfection efficacy was 84.6 % higher for the rotating irradiation than that of the stationary. About 0.59-1.34 J/m UV dose can be used to obtain one-log inactivation of E. coli. In conclusion, the novel rotating upper-room UVC-LED system is effective in reducing indoor pathogen transmission, and our findings are highly significant to a growing field where LEDs are applied for disinfection.
在各种环境公共场所中,迫切需要具有成本效益且安全的空气消毒方法。一种新型基于 UVC 的消毒系统被设计和测试,为提供了一种有前景的解决方案,因为它可以以低成本有效灭活室内生物气溶胶。紫外线发光二极管 (UVC-LED) 被用作辐射源。该系统具有独特的特点,可旋转 UVC-LED 以产生“扫描辐射”区。将大肠杆菌雾化到实验室内,使其暴露于 UVC-LED 下,并使用撞击器进行采样。评估了空气混合(充分混合与不良混合)、传输范围(短与长)和照射模式(固定与旋转)的影响。在不良混合条件下,该系统表现出色。在短消毒范围下获得的结果表明,对于不良混合情况,旋转 UVC 比固定 UVC 大约有效 70.5%。此外,我们评估了不良混合情况下长消毒范围的性能,旋转照射的消毒效果比固定照射高 84.6%。约 0.59-1.34 J/m 的 UV 剂量可用于使大肠杆菌失活一个对数。总之,新型旋转式天花板 UVC-LED 系统可有效减少室内病原体传播,我们的发现对 LED 在消毒领域的应用这一日益增长的领域具有重要意义。