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Can N95 Respirators Be Reused after Disinfection? How Many Times?

机译:消毒后,N95呼吸器可以重复使用吗? 多少次?

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The coronavirus disease 2019 (COVID-19) pandemic has led to a major shortage of N95 respirators, which are essential for protecting healthcare professionals and the general public who may come into contact with the virus. Thus, it is essential to determine how we can reuse respirators and other personal protective equipment in these urgent times. We investigated multiple commonly used disinfection schemes on media with particle filtration efficiency of 95%. Heating was recently found to inactivate the virus in solution within 5 min at 70 degrees C and is among the most scalable, user-friendly methods for viral disinfection. We found that heat (<= 85 degrees C) under various humidities (<= 100% relative humidity, RH) was the most promising, nondestructive method for the preservation of filtration properties in meltblown fabrics as well as N95-grade respirators. At 85 degrees C, 30% RH, we were able to perform 50 cycles of heat treatment without significant changes in the filtration efficiency. At low humidity or dry conditions, temperatures up to 100 degrees C were not found to alter the filtration efficiency significantly within 20 cycles of treatment. Ultraviolet (UV) irradiation was a secondary choice, which was able to withstand 10 cycles of treatment and showed small degradation by 20 cycles. However, UV can potentially impact the material strength and subsequent sealing of respirators. Finally, treatments involving liquids and vapors require caution, as steam, alcohol, and household bleach all may lead to degradation of the filtration efficiency, leaving the user vulnerable to the viral aerosols.
机译:2019年冠状病毒疾病(Covid-19)大流行导致了N95呼吸器的主要短缺,这对于保护医疗保健专业人员和可能与病毒接触的公众至关重要。因此,必须在这些迫切时间中确定我们如何重复使用呼吸器和其他个人防护设备。我们调查了多种常用的消毒方案,介质含有95%的介质。最近发现加热将病毒在溶液中在70摄氏度下在50分钟内灭活,并且是最可扩展,用户友好的病毒消毒方法。我们发现在各种湿度(<= 100%相对湿度,RH)下的热(<= 85℃)是最有希望的,用于保存熔喷织物的过滤性能以及N95级呼吸器的最有希望的非破坏性方法。在85℃,30%RH下,我们能够在过滤效率的情况下执行50个热处理的热处理。在低湿度或干燥条件下,未发现高达100摄氏度的温度明显改变过滤效率在20个循环的治疗中。紫外(UV)辐射是次要选择,其能够承受10个循环的治疗循环,并显示出20个循环的小降解。然而,UV可能会影响材料强度和随后的呼吸器密封。最后,涉及液体和蒸气的治疗需要小心,因为蒸汽,酒精和家庭漂白剂都可能导致过滤效率的降解,让使用者容易受病毒气溶胶的伤害。

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