Disinfecting Efficacy of an Ozonated Water Spray Chamber: Scientific Evidence of the Total and Partial Biocidal Effect on Personal Protective Equipment and in Vitro Analysis of a Viral Experimental Model

人体净化 原木减少 臭氧 化学 水消毒 体外 自来水 微生物学 食品科学 生物 医学 环境科学 环境工程 生物化学 病理 有机化学
作者
Fabricia Oliveira Oliveira,Laerte Marlon Conceição dos Santos,Eduardo Santos da Silva,Letícia de Alencar Pereira Rodrigues,Paulo Roberto Freitas Neves,Greta Almeida Fernandes Moreira,Gabriela Monteiro Lobato,Carlos Nascimento,Marcelo Gerhardt,Alex Álisson Bandeira Santos,Luís Alberto Brêda Mascarenhas,Bruna Aparecida Souza Machado
出处
期刊:Ozone-science & Engineering [Taylor & Francis]
卷期号:45 (2): 111-129 被引量:8
标识
DOI:10.1080/01919512.2022.2040353
摘要

Due to the high recurrence of microbial infections, developing new technologies for preventing the dissemination of pathogens is essential, especially to prevent infection in humans. Thus, devices for the decontamination of surfaces reduce not only the spread of pathogens in the environment, but provide greater security and protection for communities. Ozone (O3) is a substance capable of reducing or eliminating several types of microorganisms owing to its biocidal capacity, including when it is dissolved in water. The objective of this study was to develop an instant decontamination device using ozonated water. To confirm its biocidal action and verify the device's efficacy, the reduction of the microbial load of important pathogens on personal protective equipment (PPE) was assessed. In addition, in order to confirm the biocidal action of ozonated water against SARS-CoV-2, in vitro tests on a viral model of Gammacoronavirus were performed. The results showed the efficacy of ozonated water in the disinfection device at concentration ranges of 0.3–0.6 mg/L and 0.7–0.9 mg/L of ozonated water, with growth reductions above 2 log10 for both concentration ranges tested and inactivation fractions above 60% (0.3–0.6 mg/L) and 80% (0.7–0.9 mg/L), with a high proportion of the tested PPE showing 100% microbial reduction. In vitro results for the evaluation of ozonated water in a viral model showed a 99.9% reduction percentage in the concentration range of 0.3 to 0.5 mg/L and a 99% reduction in the concentration range of 0.6 to 0.8 mg/L, with a 5.10 log EDI50/mL and 6.95 log EDI50/mL reduction, respectively. The instant decontamination system developed in this study proved effective for microbial reduction, and we confirmed the potential of ozonated water as a biocidal agent. Therefore, the proposed decontamination device could be considered as a tool for reducing contamination on surfaces using ozonated water.
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