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  • Title: Optical and application study of gas-liquid discharge excited by bipolar nanosecond pulse in atmospheric air.
    Author: Wang S, Wang WC, Yang DZ, Liu ZJ, Zhang S.
    Journal: Spectrochim Acta A Mol Biomol Spectrosc; 2014 Oct 15; 131():571-6. PubMed ID: 24845733.
    Abstract:
    In this study, a bipolar nanosecond pulse with 20ns rising time is employed to generate air gas-liquid diffuse discharge plasma with room gas temperature in quartz tube at atmospheric pressure. The image of the discharge and optical emission spectra of active species in the plasma are recorded. The plasma gas temperature is determined to be approximately 390K by compared the experimental spectra with the simulated spectra, which is slightly higher than the room temperature. The result indicated that the gas temperature rises gradually with pulse peak voltage increasing, while decreases slightly with the electrode gap distance increasing. As an important application, bipolar nanosecond pulse discharge is used to sterilize the common microorganisms (Actinomycetes, Candida albicans and Escherichia coli) existing in drinking water, which performs high sterilization efficiency.
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