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湿热法作为一种有前途的 N95 口罩消毒方法:一项比较四种消毒方式——湿热法、蒸汽法、紫外线-C 照射法和过氧化氢等离子体法的大规模临床研究。

Moist heat as a promising method to decontaminate N95 masks: A large scale clinical study comparing four decontamination modalities-moist heat, steam, ultraviolet-C irradiation, and hydrogen peroxide plasma.

机构信息

Department of Infectious Diseases, Singapore General Hospital, Singapore; Department of Infection Prevention & Epidemiology, Singapore General Hospital, Singapore; Duke-NUS Medical School, Singapore.

DSO National Laboratories, Singapore.

出版信息

Int J Infect Dis. 2023 Nov;136:151-157. doi: 10.1016/j.ijid.2023.09.016. Epub 2023 Sep 25.

Abstract

BACKGROUND

Early in the COVID-19 pandemic, there was a global shortage of masks. Although mask reprocessing was practiced, no clinical study has assessed systematically the impact of repeated cycles of wear and decontamination on the integrity of N95 filtering facepiece respirators (FFRs).

METHODS

We evaluated mask fit assessed by qualitative respirator fit test (QRFT) after each cycle of wear and decontamination, as well as four measures of mask integrity-bacterial filtration efficacy, particle filtration efficacy, differential pressure, and splash resistance through five cycles of wear and decontamination using one of the four modalities (moist heat, steam, ultraviolet-C irradiation, and hydrogen peroxide plasma).

RESULTS

A total of 60.6% (hydrogen peroxide plasma) to 77.5% (moist heat) of the FFRs passed five cycles of wear and decontamination, as assessed by the wearers passing QRFT all five times. Moist heat-decontaminated FFRs retained all technical measures of integrity through all five cycles.

CONCLUSIONS

This is the first large-scale study to assess systematically the impact (clinically and quantitatively) on N95 FFR integrity of repeated cycles of wearing followed by decontamination. Our results suggest that moist heat is a promising method for decontaminating N95 FFRs. Performing QRFT after every cycle of wear and decontamination ensures wearer safety. Although there is currently no mask shortage, reprocessing may reduce medical waste and improve sustainability.

摘要

背景

在 COVID-19 大流行早期,全球口罩短缺。尽管已经进行了口罩再处理,但尚无临床研究系统评估佩戴和消毒重复循环对 N95 过滤式面罩(FFR)完整性的影响。

方法

我们评估了每次佩戴和消毒循环后的定性呼吸器适配测试(QRFT)评估的口罩贴合度,以及通过五个佩戴和消毒循环使用四种模式(湿热、蒸汽、紫外线-C 照射和过氧化氢等离子体)中的一种进行的四项口罩完整性措施-细菌过滤效率、颗粒过滤效率、压差和飞溅阻力。

结果

在五次佩戴和消毒循环中,有 60.6%(过氧化氢等离子体)至 77.5%(湿热)的 FFR 通过了评估,所有五次佩戴 QRFT 的使用者都通过了测试。湿热消毒的 FFR 在所有五个循环中均保留了所有完整性技术措施。

结论

这是第一项系统评估佩戴后重复消毒对 N95 FFR 完整性(临床和定量)影响的大规模研究。我们的研究结果表明,湿热是一种有前途的 N95 FFR 消毒方法。每次佩戴和消毒循环后进行 QRFT 可确保使用者的安全。尽管目前没有口罩短缺,但再处理可能会减少医疗废物并提高可持续性。

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