首页> 外文期刊>Plasma Science, IEEE Transactions on >Atomic Oxygen and Hydroxyl Radical Generation in Round Helium-Based Atmospheric-Pressure Plasma Jets by Various Electrode Arrangements and Its Application in Sterilizing Streptococcus mutans
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Atomic Oxygen and Hydroxyl Radical Generation in Round Helium-Based Atmospheric-Pressure Plasma Jets by Various Electrode Arrangements and Its Application in Sterilizing Streptococcus mutans

机译:圆形氦基大气压等离子体射流中各种电极排列产生的氧原子和羟自由基及其在消毒<斜体>变形链球菌中的应用

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摘要

The reactive chemical species generated in an atmospheric-pressure plasma jet (APPJ), such as hydroxyl radical and atomic oxygen, are generally regarded as the major sources for several biomedical applications. In this paper, we propose an APPJ with a 25-kHz high-voltage powered stainless steel tube fixed inside a quartz tube and an aluminum grounded electrode that is wrapped around the quartz tube. The results show that the radical intensities of atomic oxygen and hydroxyl radical, gas temperature, and power absorption increase with increasing distance of discharge gap distance under the same applied voltage. Increasing the width of grounded electrode increases gas temperature and causes higher power absorption but only slight change of radical generation. We have applied the APPJ with the conditions of highest radical generation (grounded electrode width discharge gap distance mm) for effectively sterilizing within 15 s, which shows a highly potential application for root canal disinfection.
机译:大气压等离子体射流(APPJ)中产生的反应性化学物质,例如羟基自由基和原子氧,通常被认为是几种生物医学应用的主要来源。在本文中,我们提出了一种APPJ,该APPJ具有固定在石英管内的25 kHz高压供电不锈钢管和缠绕在石英管周围的铝接地电极。结果表明,在相同的施加电压下,原子氧和羟基自由基的自由基强度,气体温度和功率吸收随着放电间隙距离的增加而增加。增大接地电极的宽度会增加气体温度并导致更高的功率吸收,但自由基产生的变化很小。我们在最高的自由基产生条件下(接地电极宽度放电间隙距离mm)在15 s内有效杀菌的条件下应用了APPJ,这显示了根管消毒的巨大潜力。

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