School of Civil Engineering, The University of Queensland, St. Lucia, QLD, 4072, Australia.
Australian Infectious Diseases Research Centre, School of Chemistry and Molecular Biosciences, The University of Queensland, St. Lucia, QLD, 4072, Australia.
Environ Res. 2021 May;196:110944. doi: 10.1016/j.envres.2021.110944. Epub 2021 Feb 26.
The COVID-19 pandemic has revealed gaps in our understanding of safe, effective and efficient means of disinfecting high use public spaces. Whilst this creates an opportunity for development and application of innovative approaches such as unmanned aerial vehicle (UAV) based disinfection, unregulated outdoor disinfection using chlorine has led to environmental and public health risks. This study has quantified the efficiency, safety and efficacy of UAV-based spraying of aqueous ozone. Optimised UAV flight characteristics of 4.7 km/h at 1.7 m elevation spraying 2.4 L/min were able to provide >97% and >92% coverage of a 1 m and 2 m wide swath respectively. During spraying operations using 1 mg/L aqueous ozone, atmospheric concentrations of ozone remained within background levels (<0.04 ppm). Highly efficient inactivation of two different isolates of SARS-CoV-2 virus was achieved at aqueous ozone concentrations of 0.75 mg/L after an incubation period of only 5 min, with 0.375 mg/L achieving 82-91.5% inactivation in this time. Exposure of diamondback moth larvae and parasitic wasps to 1 mg/L aqueous ozone did not significantly affect their survivorship. These results indicate for the first time that aqueous ozone may provide the required balance between human and environmental safety and viral inactivation efficacy for targeted application in high risk outdoor settings.
新冠疫情揭示了我们在安全、有效、高效消毒高使用公共空间手段方面的差距。虽然这为开发和应用创新方法(如基于无人机的消毒)创造了机会,但未经监管的户外氯消毒已导致环境和公共卫生风险。本研究量化了基于无人机的水臭氧喷雾的效率、安全性和效果。优化的无人机飞行特性为 4.7 公里/小时,在 1.7 米的高度以 2.4 升/分钟的速度喷雾,能够分别提供 >97%和 >92%的 1 米和 2 米宽条带的覆盖率。在使用 1 毫克/升水臭氧进行喷雾作业期间,大气中的臭氧浓度保持在背景水平(<0.04 ppm)以下。在仅 5 分钟的孵育期后,两种不同的 SARS-CoV-2 病毒分离株在 0.75 毫克/升水臭氧浓度下达到了高效灭活,而在这段时间内,0.375 毫克/升的浓度达到了 82-91.5%的灭活效果。1 毫克/升水臭氧暴露对小菜蛾幼虫和寄生蜂的存活率没有显著影响。这些结果首次表明,水臭氧可能在人类和环境安全以及病毒灭活效果之间提供所需的平衡,以便在高风险的户外环境中进行有针对性的应用。