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Atmospheric pressure plasma jet utilizing Ar and Ar/H2O mixtures and its applications to bacteria inactivation

  • Cheng Cheng
  • , Jie Shen
  • , De-Zhi Xiao
  • , Hong-Bing Xie
  • , Yan Lan
  • , Shi-Dong Fang
  • , Yue-Dong Meng
  • , Paul K. Chu

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    Abstract

    An atmospheric pressure plasma jet generated with Ar with H2O vapor is characterized and applied to inactivation of Bacillus subtilis spores. The emission spectra obtained from Ar/H2O plasma shows a higher intensity of OH radicals compared to pure argon at a specified H2O concentration. The gas temperature is estimated by comparing the simulated spectra of the OH band with experimental spectra. The excitation electron temperature is determined from the Boltzmann's plots and Stark broadening of the hydrogen Balmer Hβ line is applied to measure the electron density. The gas temperature, excitation electron temperature, and electron density of the plasma jet decrease with the increase of water vapor concentration at a fixed input voltage. The bacteria inactivation rate increases with the increase of OH generation reaching a maximum reduction at 2.6% (v/v) water vapor. Our results also show that the OH radicals generated by the Ar/H2O plasma jet only makes a limited contribution to spore inactivation and the shape change of the spores before and after plasma irradiation is discussed. 
    Original languageEnglish
    Article number75204
    JournalChinese Physics B
    Volume23
    Issue number7
    Online published15 May 2014
    DOIs
    Publication statusPublished - 1 Jul 2014

    Research Keywords

    • plasma applications
    • plasma sources
    • plasma temperature and density

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