Development of a prototype dry decontamination method for particulate contamination: The DryCon system.

Q3 Medicine
Barbara M Alexander, H Amy Feng, Gabriel Merk
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引用次数: 0

Abstract

Objective: This article describes the development of a prototype dry decontamination system (DryCon) for use in the event of a contamination incident involving a particulate contaminant. Disrobing and showering is currently recommended almost exclusively in mass decontamination, although it may not be feasible when water is scarce, in cold weather environments, or when there may be compliance issues with the requirement to disrobe, ie, unwillingness to disrobe. During disrobing, dust particles could also re-aerosolize, leading to inhalation of contaminants.

Design: The DryCon prototype uses air jets for dry decontamination. The system is portable and can run on building-supplied 220-V power or generator power. Multiple contaminated persons can be treated rapidly, one after the other, using this system.

Setting: We tested DryCon in a controlled environment, using a manikin and three different types of fabric squares to investigate its effectiveness, with a decontamination time of 60 seconds.

Main outcome: At the higher airflow tested, ie, 90 percent of full blower speed or approximately 540 cfm (15 m3/minute), mean decontamination efficiencies of 56.8 percent, 70.3 percent, and 80.7 percent were measured for firefighter (FF) turnout fabric, cotton denim, and polyester double knit fabric, respectively.

Results: Removal of this easily re-aerosolized fraction of the contaminants helps protect contaminated people, as well as healthcare providers they come in contact with, from the potential risk of further inhalation exposures from the re-aerosolization caused by doffing clothing.

Conclusion: The results demonstrate the promise of the DryCon system for use where water is not available, as a first step prior to wet decontamination, or in an industrial setting for post-work-shift decontamination. Further lab and field research will be necessary to prove the effectiveness of this technique in real-world applications and to determine if respiratory protection or other personal protective equipment (PPE) is needed during use of the DryCon system.

针对颗粒污染的干燥去污方法原型的开发:DryCon系统。
目的:本文描述了在涉及颗粒污染物的污染事件中使用的原型干去污系统(DryCon)的开发。目前几乎只建议在大规模去污过程中脱掉衣服和淋浴,但在缺水、天气寒冷或存在要求脱掉衣服的合规问题(即不愿脱掉衣服)的情况下可能不可行。在脱衣服的过程中,灰尘颗粒也会重新雾化,导致污染物的吸入。设计:DryCon原型机使用空气射流进行干式净化。该系统是便携式的,可以在建筑物供电的220v电源或发电机上运行。使用该系统可以一个接一个地快速治疗多个受污染的人。设置:我们在一个受控的环境中测试了DryCon,用一个人体模型和三种不同类型的织物方块来研究它的有效性,去污时间为60秒。主要结果:在更高的气流测试中,即鼓风机全速的90%或大约540 cfm (15 m3/分钟),消防员(FF)道道衣织物、棉质牛仔布和聚酯双层针织织物的平均净化效率分别为56.8%、70.3%和80.7%。结果:去除这一容易再雾化的污染物部分有助于保护受污染的人,以及他们接触的医疗保健提供者,避免因脱衣服而引起的再雾化而进一步吸入暴露的潜在风险。结论:实验结果证明了DryCon系统在没有水的情况下的应用前景,可以作为湿法净化前的第一步,或者在工业环境中用于下班后的净化。需要进一步的实验室和现场研究来证明该技术在实际应用中的有效性,并确定在使用DryCon系统期间是否需要呼吸保护或其他个人防护设备(PPE)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
American journal of disaster medicine
American journal of disaster medicine Medicine-Medicine (all)
CiteScore
1.10
自引率
0.00%
发文量
8
期刊介绍: With the publication of the American Journal of Disaster Medicine, for the first time, comes real guidance in this new medical specialty from the country"s foremost experts in areas most physicians and medical professionals have never seen…a deadly cocktail of catastrophic events like blast wounds and post explosion injuries, biological weapons contamination and mass physical and psychological trauma that comes in the wake of natural disasters and disease outbreak. The journal has one goal: to provide physicians and medical professionals the essential informational tools they need as they seek to combine emergency medical and trauma skills with crisis management and new forms of triage.
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