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Non-Thermal Plasma in Contact with Water: The Origin of Species

机译:与水接触的非热等离子体:物种的起源

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摘要

Non-thermal atmospheric pressure plasma has attracted considerable attention in recent years due to its potential for biomedical applications. Determining the mechanism of the formation of reactive species in liquid treated with plasma is thus of paramount importance for both fundamental and applied research. In this work, the origin of reactive species in plasma-treated aqueous solutions was investigated by using spin-trapping, hydrogen and oxygen isotopic labelling and electron paramagnetic resonance (EPR) spectroscopy. The species originating from molecules in the liquid phase and those introduced with the feed gas were differentiated by EPR and 1H NMR analysis of liquid samples. The effects of water vapour and oxygen admixtures in the feed gas were investigated. All the reactive species detected in the liquid samples were shown to be formed largely in the plasma gas phase. It is suggested that hydrogen peroxide (determined by UV/Vis analysis) is formed primarily in the plasma tube, whereas the radical species ·OOH, ·OH and ·H are proposed to originate from the region between the plasma nozzle and the liquid sample.
机译:由于其对生物医学应用的可能性,近年来,非热大气压等离子体引起了相当大的关注。从等离子体处理的液体中形成反应性物质的形成的机理是对基本和应用研究至关重要的重要性。在这项工作中,通过使用旋捕,氢和氧同位素标记和电子顺磁共振(EPR)光谱来研究等离子体处理水溶液中的反应性物种的起源。来自液相中的分子的物种和用进料气引入的那些通过EPR和1H NMR分析来分化液体样品。研究了水蒸气和氧气混合物在进料气体中的影响。显示在液体样品中检测到的所有反应物质被显示为在血浆气相中大致形成。建议,过氧化氢(通过UV / VIS分析测定)主要在等离子体管中形成,而自由基物质·OOH,·OH和·H被提出源自等离子体喷嘴和液体样品之间的区域。

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