Epelle Emmanuel I, Macfarlane Andrew, Cusack Michael, Burns Anthony, Okolie Jude A, Mackay William, Rateb Mostafa, Yaseen Mohammed
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 ML1 4GP, United Kingdom.
Chem Eng J. 2023 Feb 15;454:140188. doi: 10.1016/j.cej.2022.140188. Epub 2022 Nov 6.
Ozone - a powerful antimicrobial agent, has been extensively applied for decontamination purposes in several industries (including food, water treatment, pharmaceuticals, textiles, healthcare, and the medical sectors). The advent of the COVID-19 pandemic has led to recent developments in the deployment of different ozone-based technologies for the decontamination of surfaces, materials and indoor environments. The pandemic has also highlighted the therapeutic potential of ozone for the treatment of COVID-19 patients, with astonishing results observed. The key objective of this review is to summarize recent advances in the utilisation of ozone for decontamination applications in the above-listed industries while emphasising the impact of key parameters affecting microbial reduction efficiency and ozone stability for prolonged action. We realise that aqueous ozonation has received higher research attention, compared to the gaseous application of ozone. This can be attributed to the fact that water treatment represents one of its earliest applications. Furthermore, the application of gaseous ozone for personal protective equipment (PPE) and medical device disinfection has not received a significant number of contributions compared to other applications. This presents a challenge for which the correct application of ozonation can mitigate. In this review, a critical discussion of these challenges is presented, as well as key knowledge gaps and open research problems/opportunities.
臭氧——一种强大的抗菌剂,已在多个行业(包括食品、水处理、制药、纺织、医疗保健和医疗部门)广泛应用于净化目的。新冠疫情的出现促使基于臭氧的不同技术在表面、材料和室内环境净化方面有了新的发展。该疫情还凸显了臭氧治疗新冠患者的潜在疗效,已观察到惊人的效果。本综述的主要目的是总结臭氧在上述行业净化应用方面的最新进展,同时强调影响微生物减少效率和臭氧长期作用稳定性的关键参数的影响。我们认识到,与臭氧的气态应用相比,水相臭氧处理受到了更多的研究关注。这可能归因于水处理是其最早的应用之一。此外,与其他应用相比,气态臭氧在个人防护装备(PPE)和医疗器械消毒方面的应用贡献并不显著。这带来了一个挑战,而正确应用臭氧处理可以缓解这一挑战。在本综述中,对这些挑战进行了批判性讨论,以及关键的知识空白和开放的研究问题/机会。