常压冷等离子体在医院灭菌中的应用

Magesh T. Rajan, Ashley Wilkins, Brandon Phung
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引用次数: 1

摘要

我们的等离子体工程研究实验室(PERL)一直在为一系列应用开发各种非热等离子体放电。我们最近的一项开发是便携式台式大气压非热空气等离子体系统,该系统使用电阻屏障放电配置,设计和开发用于在非常简单的一键操作中对一系列物品进行细菌净化和灭菌。在这项工作中,我们将介绍导致医院获得性感染(HAI)的细菌灭活效果的结果。便携式台式大气压非热空气等离子体系统设计用于灭活不同表面纹理的医疗器械中的细菌,如金属,聚合物和玻璃。便携式台式大气压非热空气等离子体系统设计用于标准50-60 Hz低频交流电源输入和环境空气。本课题组在该系统中使用的核心电阻阻挡等离子体装置具有良好的特性。观察到臭氧和一氧化氮(NO)是便携式台式大气压非热空气等离子体系统产生的主要长寿命反应物质。细菌灭活在各种医疗表面的结果将详细介绍。
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Atmospheric Pressure Cold Plasma Application for Hospital Sterilization
Our Plasma Engineering Research Lab (PERL) has been developing a variety of non-thermal plasma discharges for a range of applications. One of our recent development is a portable table-top atmospheric pressure non-thermal air plasma system using a resistive barrier discharge configuration that has been designed and developed for bacterial decontamination and sterilization of a range of items in a very simple one-touch operation. In this work, we will present the results of inactivation efficacies of bacteria that causes hospital acquired infections (HAI). The portable table-top atmospheric pressure non-thermal air plasma system is designed to inactivate bacteria in medical instruments of varied surface texture such as metals, polymers and glasses. The portable table-top atmospheric pressure non-thermal air plasma system is designed to function at standard 50-60 Hz low frequency AC power input and in the ambient air. The core resistive barrier plasma setup used in this system is well characterized by our group. Ozone, and nitric oxides (NO) were observed to be the predominant long lived reactive species produced by the portable table-top atmospheric pressure non-thermal air plasma system. The results of the bacterial inactivation on variety of medical surfaces will be presented in detail.
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