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- W2912621786 abstract "Surface decontamination is an important issue in different areas like medicine and food industry. Traditional methods of sterilization have disadvantages as thermal effect, producing toxic and chemical residues. In our research we have presented an applicable and outstanding device for surface sterilization. Cold atmospheric plasma method is suitable for the treatment of heat sensitive and the objects that are vulnerable to vacuum. The dielectric barrier discharge (DBD) is a low temperature and atmospheric pressure plasma source that is created between two conductive electrodes connected to an ac power supply. At least, one of the electrodes is covered by the dielectric layer. DBD due to its low temperature, atmospheric pressure and being non-equilibrium plasma has many applications in industry, chemistry and medicine. In order to study the effect of DBD plasma on bacteria, we study its inactivating influence on E. coli. These bacteria are important in the food industry, hospital infections and burning and chronic ulcer`s infection. The effects of the exposure time and applied voltage are studied. The mechanism of sterilization is studied among some experiments. Also the tests of ATP assay, AFM and spectrometry are done and the results of the tests and experiments are presented. Consequently, the results demonstrate that this method is capable in surface sterilizations in a fast and safe situation. We also observed that UV radiation, heat and electric field are not the effective agents in sterilization mechanism and reactive species such as Ozone, free radicals and charged particles are the main agentsKeywords :Atmospheric plasma, ATP, AFM, Coronal barrier discharge, DBD, E. coli, Non-thermal plasma, Sterilization." @default.
- W2912621786 created "2019-02-21" @default.
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- W2912621786 date "2017-01-01" @default.
- W2912621786 modified "2023-09-26" @default.
- W2912621786 title "Manufacturing of Plasma Probe Applicable in Plasma Medicine" @default.
- W2912621786 hasPublicationYear "2017" @default.
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