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- Title
Helium atmospheric pressure plasma jet parameters and their influence on bacteria deactivation in a medium.
- Authors
Jurov, Andrea; Škoro, Nikola; Spasić, Kosta; Modic, Martina; Hojnik, Nataša; Vujošević, Danijela; Đurović, Milena; Petrović, Zoran Lj.; Cvelbar, Uroš
- Abstract
Atmospheric pressure plasmas are becoming relevant in local microbial deactivation and other combined effects of plasmas on living organisms. For this reason, our research was focussed on optimisation of atmospheric pressure plasma jet (APPJ) parameters to complete the deactivation of different bacteria strains in a medium. Different helium APPJ treatments with different discharge parameters were used, such as input voltages and gas flows. To better understand plasma properties behind complete bacteria deactivation at optimised discharge parameters, optical and electrical plasma jet diagnostics were performed, including electrical characterisation of the plasma source, optical emission spectroscopy of the plasma plume and intensified charged coupled device imaging of the discharge behaviour for every set of plasma parameters. Then, the resulting plasma liquid chemistry was assessed to establish the connections between reactive species generated in the gaseous and liquid phases. The most efficient deactivation was found for higher discharge powers and gas flow rates, and that was linked to higher densities of reactive oxygen and nitrogen species, especially hydrogen peroxide and medium solvated charges.
- Subjects
PLASMA jets; PLASMA pressure; ATMOSPHERIC pressure; PLASMA chemistry; PLASMA diagnostics; HELIUM; INDUCTIVELY coupled plasma atomic emission spectrometry
- Publication
European Physical Journal D (EPJ D), 2022, Vol 76, Issue 2, p1
- ISSN
1434-6060
- Publication type
Article
- DOI
10.1140/epjd/s10053-022-00357-y