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Characterization of an atmospheric pressure air plasma device under different modes of operation and their impact on the liquid chemistry

机译:不同操作模式下大气压空气等离子体装置的表征及其对液体化学的影响

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摘要

It has been shown that plasma generated in contact with liquid can be tailored to tune the composition of plasma functionalized liquids. For biomedical applications, it is necessary to understand the generation of the plasma treated liquids to modulate the composition and thus the biological response. In this work, two distinct discharge compositions were realized by modifying the location of the ground electrode in a pin-to-liquid plasma system. Through this simple modification to the configurations, the spatiotemporal characteristics of the discharge were significantly affected which, in turn, affected the composition of the generated plasma activated water (PAW). Colorimetric testing of the PAW generated from each system revealed that only one configuration was able to generate PAW with a high concentration of H_2O_2. Using time-, space-, and wavelength-resolved imaging of excited plasma species [OH, N_2 (SPS), N_2~+ (FNS), and atomic O], the differences in PAW composition were linked to the differences observed in the discharge dynamics between the two configurations.
机译:已经表明,在与液体接触的等离子体可以定制以调节等离子体官能化液体的组成。对于生物医学应用,有必要了解血浆处理液体的产生以调节组合物并因此进行生物反应。在这项工作中,通过在销液相体系中修改接地电极的位置来实现两个不同的排出组合物。通过这种简单的修改对配置,放电的时空特性受到显着影响,反过来影响产生的等离子体活性水(爪子)的组成。从各系统生成的PAW的比色测试显示,只有一个配置为能够与双氧水的高浓度,以产生PAW。使用励磁等离子体物种的时间,空间和波长分辨成像[OH,N_2(SPS),N_2〜+(FNS)和原子O],爪子组合物的差异与放电中观察到的差异有关两种配置之间的动态。

著录项

  • 来源
    《Journal of Applied Physics》 |2021年第12期|123303.1-123303.8|共8页
  • 作者单位

    Plasma Research Group School of Biosystems and Food Engineering University College Dublin Dublin 4 Ireland Environmental Sustainability and Health Institute Technological University Dublin Dublin 7 Ireland;

    Department of Electrical Engineering and Electronics University of Liverpool Liverpool L69 3BX United Kingdom;

    Department of Electrical Engineering and Electronics University of Liverpool Liverpool L69 3BX United Kingdom;

    Department of Electrical Engineering and Electronics University of Liverpool Liverpool L69 3BX United Kingdom;

    Plasma Research Group School of Biosystems and Food Engineering University College Dublin Dublin 4 Ireland;

    Environmental Sustainability and Health Institute Technological University Dublin Dublin 7 Ireland;

    Plasma Research Group School of Biosystems and Food Engineering University College Dublin Dublin 4 Ireland Environmental Sustainability and Health Institute Technological University Dublin Dublin 7 Ireland Institute for Global Food Security School of Biological Sciences Queens University Belfast Northern Ireland BT9 5DL United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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