大气压Ar/NH3/H2O等离子体射流放电特性

Translated title of the contribution: Discharge Characteristics of Ar/NH3/H2O Plasma Jet Under Atmospheric Pressure

Shanting Yi, Feng Liu, Zhi Fang

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

To enhance the treatment effects of the atmospheric pressure plasma jet (APPJ) in the fields of material surface treatment, environmental protection, and disinfection sterilization, etc., NH3/H2O were added to the Ar APPJ to improve the activity of the APPJ. The optical emission spectral intensities of NH, OH and O and the length of the plasma plume were investigated at various applied voltages and NH3/H2O ratios by optical emission spectra diagnosis and light-emission images observation. The voltage-current waveforms and Lissajous figures were also recorded correspondingly. Results showed that the main species produced by APPJ in Ar/NH3/H2O included Ar, N2, NH, OH, and O. As the applied voltage increased, the emission spectral intensities of NH, OH and O, the length of the plasma plume, discharge power and transported charges all increased. When the added NH3 reached 0.012 5% in the Ar/NH3 mixed gas, the emission spectral intensity of NH reached the maximum.,When H2O was added under this condition, it was found that the emission spectral intensities of OH and O reached the maximum values when the water vapor content was 0.25% and the emission spectral intensities of OH and O increased by 104.4% and 55.8% as compared with those of APPJ in Ar/NH3, while the emission spectral intensity of NH decreased by 18.7%. The overall emission spectral intensities of the oxidizing particles (NH, OH and O) in Ar APPJ reached the maximum, and it should be more favorable for applications in materials hydrophilic modification and disinfection sterilization, etc.

Translated title of the contributionDischarge Characteristics of Ar/NH3/H2O Plasma Jet Under Atmospheric Pressure
Original languageChinese (Traditional)
Pages (from-to)1936-1944
Number of pages9
JournalGaodianya Jishu/High Voltage Engineering
Volume45
Issue number6
DOIs
StatePublished - 30 Jun 2019

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