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For bio-applications of atmospheric pressure plasmas, our group has been reported previously that inactivation of microorganisms such as fungal spores of Penicillium digitatum by employing high-density non-equilibrium atmos pheric pressure plasma [1]. To understand a mechanism of inactivation, there needs analysis of reactions between plasmas and biomaterials. It has long been appreciated that radicals...
We discussed the inactivation mechanism of Penicillium digitatum treated by nonequiribrium atmospheric pressure plasma. We focused on the ozone, ultraviolet radiation, O radical, and OH radical as inactivation factor. The diagnostics of non-equilibrium atmospheric pressure plasma was performed by optical emission spectroscopy and ultraviolet absorption spectroscopy. It is confirmed that the effects...
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