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The Influence of Feed Gas Humidity Versus Ambient Humidity on Atmospheric Pressure Plasma Jet-Effluent Chemistry and Skin Cell Viability

机译:进料气湿度与环境湿度对大气压等离子体射流化学和皮肤细胞活力的影响

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The influence of ambient air species especially humidity is an ever-present challenge for atmospheric pressure plasma jet applications. Especially, where the plasma-induced effects are extremely sensitive to humidity, such as in the field of plasma medicine, an understanding of the influence of ambient species diffusion on plasma chemistry and on reactive component composition is crucial. In this paper, we investigate the influence of ambient humidity versus feed gas humidity on the production of reactive components by atmospheric pressure plasma jets. By the use of a shielding gas curtain, we control the surrounding atmosphere around the active effluent region of the investigated argon RF-plasma jet (kinpen) and control the gas humidity of the ambient gas. By quantum cascade laser absorption spectroscopy and by Fourier transformed infrared (IR) absorption spectroscopy, the effect of diffusing surrounding molecular species on the chemistry of the long-living reactive oxygen species is investigated. Mechanisms of HO and O production are studied. In this paper, we have quantified the influence that ambient species, namely, water molecules, have on the reactive species’ generation in the gas phase. It is shown that the effect of ambient humidity is important for the long-living species production, feed gas humidity, however, has the much stronger effect. Finally, with the focus of applications in plasma medicine, the cell viability of human skin cells (HaCaT keratinocytes) as a function of feed gas and ambient gas humidity is compared.
机译:对于大气压等离子体喷射应用,环境空气种类,尤其是湿度的影响一直是一个挑战。特别地,在等离子体引起的影响对湿度极为敏感的地方,例如在等离子体医学领域,了解周围物质扩散对等离子体化学和反应性组分组成的影响至关重要。在本文中,我们研究了环境湿度与进料气湿度对大气压等离子体射流生产反应性组分的影响。通过使用屏蔽气幕,我们控制了所研究的氩射频等离子体射流(kinpen)的活动流出区域周围的周围气氛,并控制了环境气体的气体湿度。通过量子级联激光吸收光谱和傅立叶变换红外(IR)吸收光谱,研究了扩散周围分子对长寿活性氧的化学反应的影响。研究了HO和O的产生机理。在本文中,我们量化了周围物质(即水分子)对气相中反应性物质生成的影响。结果表明,环境湿度的影响对于长寿命物种的生产很重要,但是进料气体湿度的影响要大得多。最后,以在血浆医学中的应用为重点,比较了人类皮肤细胞(HaCaT角质形成细胞)作为进料气体和环境气体湿度的函数的细胞活力。

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