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通过强制臭氧对流实现高效口罩消毒。

Efficient facemask decontamination via forced ozone convection.

机构信息

Department of Mechanical Engineering, University of California Riverside, 900 University Ave, Riverside, CA, 92521, USA.

Department of Bioengineering, University of California Riverside, 900 University Ave, Riverside, CA, 92521, USA.

出版信息

Sci Rep. 2021 Jun 10;11(1):12263. doi: 10.1038/s41598-021-91735-w.

Abstract

The COVID-19 crisis has taken a significant toll on human life and the global economy since its start in early 2020. Healthcare professionals have been particularly vulnerable because of the unprecedented shortage of Facepiece Respirators (FPRs), which act as fundamental tools to protect the medical staff treating the coronavirus patients. In addition, many FPRs are designed to be disposable single-use devices, creating an issue related to the generation of large quantities of non-biodegradable waste. In this contribution, we describe a plasma-based decontamination technique designed to circumvent the shortages of FPRs and alleviate the environmental problems posed by waste generation. The system utilizes a Dielectric Barrier Discharge (DBD) to generate ozone and feed it through the fibers of the FPRs. The flow-through configuration is different than canonical ozone-based sterilization methods, in which the equipment is placed in a sealed ozone-containing enclosure without any flow through the mask polymer fibers. We demonstrate the rapid decontamination of surgical masks using Escherichia coli (E. coli) and Vesicular Stomatitis Virus (VSV) as model pathogens, with the flow-through configuration providing a drastic reduction in sterilization time compared to the canonical approach. We also demonstrate that there is no deterioration in mask structure or filtration efficiency resulting from sterilization. Finally, we show that this decontamination approach can be implemented using readily available tools, such as a plastic box, a glass tube, few 3D printed components, and the high-voltage power supply from a plasma globe toy. The prototype assembled for this study is portable and affordable, with effectiveness comparable to that of larger and more expensive equipment.

摘要

自 2020 年初新冠疫情爆发以来,它给人类生命和全球经济造成了重大损失。医护人员受到的影响尤为严重,因为他们面临着前所未有的 Facepiece Respirators(FPR)短缺问题,而 FPR 是保护治疗冠状病毒患者的医护人员的基本工具。此外,许多 FPR 设计为一次性使用的一次性设备,这就产生了与大量不可生物降解废物有关的问题。在本研究中,我们描述了一种基于等离子体的净化技术,旨在解决 FPR 短缺问题,并缓解废物产生带来的环境问题。该系统利用电介质阻挡放电(DBD)生成臭氧,并将其通过 FPR 的纤维输送。与传统的基于臭氧的灭菌方法不同,该系统采用的是流通式配置,其中设备放置在一个密封的含臭氧容器中,而不需要穿过口罩聚合物纤维。我们使用大肠杆菌(E. coli)和水疱性口炎病毒(VSV)作为模型病原体,证明了这种流通式配置可实现手术口罩的快速净化,与传统方法相比,净化时间大大缩短。我们还证明,消毒不会导致口罩结构或过滤效率恶化。最后,我们表明,这种净化方法可以使用现成的工具来实现,例如塑料盒、玻璃管、几个 3D 打印组件以及等离子球玩具的高压电源。本研究中组装的原型设备便携且价格实惠,其效果可与更大、更昂贵的设备相媲美。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27ef/8192912/745458a29203/41598_2021_91735_Fig1_HTML.jpg

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