School of Computing, Engineering & Physical Sciences, University of the West of Scotland, Paisley PA1 2BE, United Kingdom; ACS Clothing, 6 Dovecote Road Central Point Logistics Park, Centralpark ML1 4GP, United Kingdom.
ACS Clothing, 6 Dovecote Road Central Point Logistics Park, Centralpark ML1 4GP, United Kingdom.
J Microbiol Methods. 2022 Mar;194:106431. doi: 10.1016/j.mimet.2022.106431. Epub 2022 Feb 5.
Ozone treatment is an eco-friendly and cost-effective approach to achieve material disinfection, and this disinfection method is of utmost importance in the present global pandemic. The efficacy of ozone's oxidative potential on common microorganisms has been extensively studied, particularly in the food and water treatment industries. However, little is still understood regarding its antimicrobial capabilities for the treatment of textile substrates in air. In this study, fabric swatches inoculated with bacterial and fungal suspensions are exposed to ozone for different durations and at different ozone concentrations. Pathogenic bacteria (Escherichia coli, Staphylococcus aureus), and fungi (Aspergillus fumigatus, and Candida albicans), are the microbes utilised in this study. The efficacy of ozone is demonstrated by the complete removal of microbiota on the tested swatches when a concentration and exposure duration of 20 ppm and 4 mins are respectively maintained in a test ozone chamber. We expect the insights from this work to guide the development of new ozonation techniques capable of rapid sterilisation in industrial & public settings.
臭氧处理是一种环保且经济有效的材料消毒方法,在当前的全球大流行中,这种消毒方法至关重要。臭氧的氧化能力对常见微生物的效果已经得到了广泛的研究,特别是在食品和水处理行业。然而,对于臭氧在空气中处理纺织物基底的抗菌能力,我们仍知之甚少。在这项研究中,将细菌和真菌悬浮液接种的织物样本暴露于不同时间和不同浓度的臭氧中。本研究使用的微生物包括致病菌(大肠杆菌、金黄色葡萄球菌)和真菌(烟曲霉和白色念珠菌)。当在测试臭氧室中分别保持 20 ppm 的浓度和 4 分钟的暴露时间时,臭氧的功效表现为测试样本上的微生物群落完全去除。我们希望这项工作的见解能够指导新的臭氧技术的发展,使其能够在工业和公共环境中实现快速杀菌。