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分布式紧凑型等离子体反应器用于太空任务中的行星保护去污染。

Distributed compact plasma reactor decontamination for planetary protection in space missions.

机构信息

SurfPlasma, Inc, Gainesville, 32601, USA.

Emerging Pathogens Institute, University of Florida, Gainesville, Fl-32611, USA.

出版信息

Sci Rep. 2023 Feb 2;13(1):1928. doi: 10.1038/s41598-023-29049-2.

Abstract

This paper presents a proof-of-concept study establishing effectiveness of the Active Plasma Sterilizer (APS) for decontamination in planetary protection. The APS uses Compact Portable Plasma Reactors (CPPRs) to produce surface dielectric barrier discharge, a type of cold plasma, using ambient air to generate and distribute reactive species like ozone used for decontamination. Decontamination tests were performed with pathogenic bacteria (Escherichia coli and Bacillus subtilis) on materials (Aluminum, Polycarbonate, Kevlar and Orthofabric) relevant to space missions. Results show that the APS can achieve 4 to 5 log reductions of pathogenic bacteria on four selected materials, simultaneously at 11 points within 30 min, using power of 13.2 ± 2.22 W. Spatial decontamination data shows the APS can uniformly sterilize several areas of a contaminated surface within 30 min. Ozone penetration through Kevlar and Orthofabric layers was achieved using the CPPR with no external agent assisting penetration. Preliminary material compatibility tests with SEM analysis of the APS exposed materials showed no significant material damage. Thus, this study shows the potential of the APS as a light-weight sustainable decontamination technology for planetary protection with advantages of uniform spatial decontamination, low processing temperatures, low exposure times, material compatibility and the ability to disinfect porous surfaces.

摘要

本文提出了一项概念验证研究,证明了活性等离子体灭菌器(APS)在行星保护中用于消毒的有效性。APS 使用紧凑型便携式等离子体反应器(CPPR),利用环境空气产生和分布活性物质,如用于消毒的臭氧,从而产生表面电介质阻挡放电,这是一种冷等离子体。使用与太空任务相关的材料(铝、聚碳酸酯、凯夫拉和 Orthofabric)对致病细菌(大肠杆菌和枯草芽孢杆菌)进行了消毒测试。结果表明,APS 可以在 30 分钟内同时在 11 个点上,使用 13.2 ± 2.22 W 的功率,对四种选定材料上的致病细菌实现 4 到 5 个对数减少。空间消毒数据表明,APS 可以在 30 分钟内对受污染表面的多个区域进行均匀消毒。使用 CPPR 实现了臭氧穿透 Kevlar 和 Orthofabric 层,无需外部试剂协助渗透。使用 SEM 分析对 APS 暴露材料进行的初步材料兼容性测试表明,材料没有明显损坏。因此,这项研究表明,APS 作为一种用于行星保护的轻量级可持续消毒技术具有很大的潜力,具有空间消毒均匀、处理温度低、暴露时间短、材料兼容性和对多孔表面进行消毒的能力等优点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5657/9894852/817d50240c44/41598_2023_29049_Fig1_HTML.jpg

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