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Inactivation of Bacteria in Flight by Direct Exposure to Nonthermal Plasma

机译:直接暴露于非热等离子体使飞行中的细菌失活

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Plasma treatment is a promising technology for fast and effective sterilization of surfaces, waterflow, and airflow. The treatment of airflow is an important area of healthcare and biodefense that has recently gained the interest of many scientists. In this paper, we describe a dielectric barrier grating discharge (DBGD) which is used to study the inactivation of airborne Escherichia coli inside a closed air circulation system. Earlier published results indicate approximately 5-log reduction (99.999%) in the concentration of the airborne bacteria after single DBGD exposure of 10-s duration. This paper investigates plasma species influencing the inactivation. The two major factors that are studied are the effect of charged and short-lived species (direct exposure to plasma) and the effect of ozone. It is shown that for a 25% reduction in direct exposure, the inactivation falls from 97% to 29% in a single pass through the grating. The influence of ozone was studied by producing ozone remotely with an ozone generator and injecting the same concentration into the system, as that produced by the DBGD plasma. The results show a 10% reduction in the bacterial load after 10-s exposure to ozone; thus, ozone alone may not be one of the major inactivating factors in the plasma.
机译:等离子体处理是一种对表面,水流和气流进行快速有效灭菌的有前途的技术。气流的处理是医疗保健和生物防御的重要领域,最近引起了许多科学家的关注。在本文中,我们描述了一种介电屏障光栅放电(DBGD),该放电用于研究封闭的空气循环系统中机载大肠杆菌的灭活。较早发表的结果表明,单次DBGD暴露10秒后,空气传播细菌的浓度降低了约5个对数(99.999%)。本文研究了影响灭活的血浆种类。研究的两个主要因素是带电和短寿命物种的影响(直接暴露于等离子体)和臭氧的影响。结果表明,直接曝光降低25%时,单次通过光栅时失活率从97%下降到29%。通过用臭氧发生器远程产生臭氧并将与DBGD等离子体产生的浓度相同的浓度注入系统中,研究了臭氧的影响。结果表明,暴露于臭氧10秒钟后细菌载量减少了10%;因此,仅臭氧可能不是血浆中的主要灭活因素之一。

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