Large-scale decontamination of disposable FFP2 and FFP3 respirators by hydrogen peroxide vapour, Finland, April to June 2020.

Katri Laatikainen, Markku Mesilaakso, Ilpo Kulmala, Erja Mäkelä, Petri Ruutu, Outi Lyytikäinen, Susanna Tella, Tarmo Humppi, Satu Salo, Tuuli Haataja, Kristiina Helminen, Henri Karppinen, Heli Kähkönen, Tarja Vainiola, Kirsimarja Blomqvist, Sirpa Laitinen, Kati Peltonen, Marko Laaksonen, Timo Ristimäki, Jouni Koivisto
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Abstract

BackgroundThe shortage of FFP2 and FFP3 respirators posed a serious threat to the operation of the healthcare system at the onset of the COVID-19 pandemic.AimOur aim was to develop and validate a large-scale facility that uses hydrogen peroxide vapour for the decontamination of used respirators.MethodsA multidisciplinary and multisectoral ad hoc group of experts representing various organisations was assembled to implement the collection and transport of used FFP2 and FFP3 respirators from hospitals covering 86% of the Finnish population. A large-scale decontamination facility using hydrogen peroxide vapour was designed and constructed. Microbiological tests were used to confirm efficacy of hydrogen peroxide vapour decontamination together with a test to assess the effect of decontamination on the filtering efficacy and fit of respirators. Bacterial and fungal growth in stored respirators was determined by standard methods.ResultsLarge-scale hydrogen peroxide vapour decontamination of a range of FFP2 and FFP3 respirator models effectively reduced the recovery of biological indicators: Geobacillus stearothermophilus and Bacillus atrophaeus spores, as well as model virus bacteriophage MS2. The filtering efficacy and facial fit after hydrogen peroxide vapour decontamination were not affected by the process. Microbial growth in the hydrogen peroxide vapour-treated respirators indicated appropriate microbial cleanliness.ConclusionsLarge-scale hydrogen peroxide vapour decontamination was validated. After effective decontamination, no significant changes in the key properties of the respirators were detected. European Union regulations should incorporate a facilitated pathway to allow reuse of appropriately decontaminated respirators in a severe pandemic when unused respirators are not available.

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用过氧化氢蒸汽大规模净化一次性 FFP2 和 FFP3 呼吸器,芬兰,2020 年 4 月至 6 月。
背景在 COVID-19 大流行开始时,FFP2 和 FFP3 呼吸器的短缺对医疗系统的运行构成了严重威胁。我们的目标是开发并验证一种使用过氧化氢蒸汽对使用过的呼吸器进行净化的大型设施。设计并建造了一个使用过氧化氢蒸汽的大型净化设施。微生物测试用于确认过氧化氢蒸汽净化的效果,同时还进行了一项测试,以评估净化对呼吸器过滤效果和适用性的影响。结果对一系列 FFP2 和 FFP3 型呼吸器进行大规模过氧化氢蒸汽净化可有效降低生物指标的回收率:对 FFP2 和 FFP3 型呼吸器进行大规模过氧化氢蒸汽净化,可有效降低生物指标的回收率:嗜硬革兰氏菌和萎缩芽孢杆菌孢子,以及模型病毒噬菌体 MS2。过氧化氢蒸汽净化后的过滤效果和面部贴合度并未受到该工艺的影响。经过过氧化氢蒸汽处理的呼吸器中的微生物生长情况表明微生物清洁度适当。经过有效净化后,呼吸器的主要特性没有发生明显变化。欧盟法规应纳入一个便利的途径,允许在严重大流行病中无法获得未使用的呼吸器时重新使用经过适当净化的呼吸器。
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