A low power flexible dielectric barrier discharge disinfects surfaces and improves the action of hydrogen peroxide

Fuente: arXiv
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Auteurs principaux: Gershman, Sophia, Alfonso, Maria Belen Harreguy, Yatom, Shurik, Raitses, Yevgeny, Efthimion, Phillip, Haspel, Gal
Format: Preprint
Publié: 2020
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author Gershman, Sophia
Alfonso, Maria Belen Harreguy
Yatom, Shurik
Raitses, Yevgeny
Efthimion, Phillip
Haspel, Gal
author_facet Gershman, Sophia
Alfonso, Maria Belen Harreguy
Yatom, Shurik
Raitses, Yevgeny
Efthimion, Phillip
Haspel, Gal
contents There is an urgent need for disinfection and sterilization devices accessible to the public that can be fulfilled by innovative strategies for using cold atmospheric pressure plasmas. Here we explore and evaluate an approach combining a flexible printed circuit design of a dielectric barrier discharge (DBD) with an environmentally safe chemical reagent for surface decontamination from bacterial contaminants. The device operates in ambient air without any additional gas flow at a power density of about 0.5 W/cm^2. Using a 3% hydrogen peroxide solution as a model reagent we demonstrate improved reduction in the bacterial load of a surface contaminant of >6log10 in 90 seconds, about 3log10 and 2log10 faster compared to hydrogen peroxide alone and the flexible DBD alone, respectively, for the same treatment time. The synergistic action of the plasma bioactive properties and hydrogen peroxide result in a dramatic improvement of surface disinfection. This opens new possibilities for using the low power flexible DBD plasma sources for surface disinfection and decontamination.
format Preprint
id arxiv_https___arxiv_org_abs_2011_03898
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle A low power flexible dielectric barrier discharge disinfects surfaces and improves the action of hydrogen peroxide
Gershman, Sophia
Alfonso, Maria Belen Harreguy
Yatom, Shurik
Raitses, Yevgeny
Efthimion, Phillip
Haspel, Gal
Plasma Physics
There is an urgent need for disinfection and sterilization devices accessible to the public that can be fulfilled by innovative strategies for using cold atmospheric pressure plasmas. Here we explore and evaluate an approach combining a flexible printed circuit design of a dielectric barrier discharge (DBD) with an environmentally safe chemical reagent for surface decontamination from bacterial contaminants. The device operates in ambient air without any additional gas flow at a power density of about 0.5 W/cm^2. Using a 3% hydrogen peroxide solution as a model reagent we demonstrate improved reduction in the bacterial load of a surface contaminant of >6log10 in 90 seconds, about 3log10 and 2log10 faster compared to hydrogen peroxide alone and the flexible DBD alone, respectively, for the same treatment time. The synergistic action of the plasma bioactive properties and hydrogen peroxide result in a dramatic improvement of surface disinfection. This opens new possibilities for using the low power flexible DBD plasma sources for surface disinfection and decontamination.
title A low power flexible dielectric barrier discharge disinfects surfaces and improves the action of hydrogen peroxide
topic Plasma Physics
url https://arxiv.org/abs/2011.03898