Anand Shalini, Mahajan Divya, Kataki Sampriti, Chatterjee Soumya, Sharma Pankaj Kumar, Rai Pramod Kumar, Narang Rajiv
Scientist 'E' Centre for Fire, Explosive and Environment Safety (CFEES), Defence Research and Development Organisation (DRDO), Timarpur, Delhi, India.
Department of Chemistry, University of Delhi, India.
Environ Chall (Amst). 2021 Dec;5:100276. doi: 10.1016/j.envc.2021.100276. Epub 2021 Sep 8.
The ongoing Pandemic of COVID-19 caused by Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) has severely stressed the worldwide healthcare system and has created dangerous shortages of personal protective equipment (PPE) including N95 filtering facepiece respirators (FFRs). Even though suppliers struggled to meet global demand for N95 masks at an unprecedented level, a shortage of FFR appears as a significant factor in the transmission of the disease to frontline workers. CDC, USA has mentioned that FFR decontamination and reuse may be necessary during times of shortage to ensure guaranteed availability. Hence present stressed condition faced by the healthcare sector seeks for an affordable decontamination strategy that can be replicated easily broadening the utility of FFR decontamination across a range of healthcare settings. After reviewing available literature on the various disinfection techniques that may be used for the decontamination of FFRs, a first of its kind, portable Hybrid Decontamination System/procedure has been conceptualized and designed. This system combines the disinfecting properties of both vaporous hydrogen peroxide (VHP) and ultra-violet C irradiation (UV C) to ensure maximum decontamination of N95 respirators. The instrument will be equipped with a hydrogen peroxide chamber and UV light source. Sterilization of the FFRs will be done through treatment with VHP followed by UV light treatment. The proposed system will allow the user to completely sterilize the FFRs in a time-efficient manner.
由严重急性呼吸综合征冠状病毒2(SARS-CoV-2)引起的新型冠状病毒肺炎大流行给全球医疗系统带来了巨大压力,并导致包括N95过滤式面罩呼吸器(FFR)在内的个人防护装备(PPE)出现严重短缺。尽管供应商竭尽全力以前所未有的水平满足全球对N95口罩的需求,但FFR短缺似乎是疾病传播给一线工作人员的一个重要因素。美国疾病控制与预防中心(CDC)提到,在短缺时期,FFR的去污和再利用可能是必要的,以确保其可用性。因此,医疗部门目前面临的紧张状况寻求一种经济实惠的去污策略,这种策略可以轻松复制,从而扩大FFR去污在一系列医疗环境中的应用。在回顾了有关可用于FFR去污的各种消毒技术的现有文献后,首次构思并设计了一种便携式混合去污系统/程序。该系统结合了气态过氧化氢(VHP)和紫外线C照射(UV C)的消毒特性,以确保对N95呼吸器进行最大程度的去污。该仪器将配备一个过氧化氢腔室和紫外线光源。FFR的消毒将通过VHP处理,然后进行紫外线处理来完成。所提议的系统将允许用户以高效的方式对FFR进行完全消毒。