Effectiveness Evaluation for Bacteria and Fungi Disinfections of Developed Ozone Machine

P. Prempraneerach, W. Samosornsuk, Sorawit Likitprukpaisan, Itthikorn Prakaisak
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Abstract

A low-cost ozone machine was developed to generate gaseous ozone for decontaminating the non-ventilated and unoccupied room within a 50-minute ozonation duration. This ozone machine, equipped with a centrifugal blower, could assist in thoroughly dispersing ozone gas throughout an enclosed area, as a result this ozone machine could raise the ozone concentration up to 2.4 ppm inside a 50 square-meter classroom after the ozonation period. Performances of this ozone machine were experimentally evaluated inside both non-ventilated and ventilated classrooms. First, an average total ozone dose of 58 ppmmin, which was close to an upper limit for the >90% viral disinfection, demonstrated the machine effectiveness in the viral inactivation. Second, a waiting period for ozone decomposition and removal using a ceiling ventilated fan could be predicted from an exponential decay rate of ozone concentration to be about 1.5 hour before the decontaminated room could be re-entered safely. Third, the disinfection of bacteria and fungi, which are tougher than most viruses, were validated by the cultural tests using standard plate count agars after the 50-minute ozone exposure. Results of the colony count and microorganism identification using the MALDI-TOF MS and the fungi slide culture technique revealed that 11 species of bacteria and 5 species of fungi could be inactivated by ozone gas after the specified ozonation period.
新型臭氧机对细菌和真菌的消毒效果评价
开发了一种低成本的臭氧机,在50分钟的臭氧化时间内产生气态臭氧,用于净化不通风和无人居住的房间。该臭氧机配有离心式鼓风机,可以帮助将臭氧气体彻底分散到整个封闭区域,因此在臭氧化后,该臭氧机可以将50平方米教室内的臭氧浓度提高到2.4 ppm。在不通风和通风的教室中对该臭氧机的性能进行了实验评估。首先,平均臭氧总剂量为58 ppmmin,接近90%以上病毒消毒的上限,证明了机器在病毒灭活方面的有效性。其次,根据臭氧浓度的指数衰减率,可以预测使用吊顶通风风扇进行臭氧分解和去除的等待时间约为1.5小时,然后才能安全进入净化后的房间。第三,细菌和真菌比大多数病毒更顽强,在暴露于臭氧50分钟后,用标准平板计数琼脂进行培养测试,验证了细菌和真菌的消毒效果。利用MALDI-TOF质谱法和真菌玻片培养技术进行菌落计数和微生物鉴定,结果表明,经过规定的臭氧化时间后,臭氧气体可灭活11种细菌和5种真菌。
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