Sterilization in liquids by air plasma under intermittent discharge

Author:

MURAMATSU Kairi12,SATO Takehiko1,NAKAJIMA Tomoki1,NAGASAWA Toshikatsu3,NAKATANI Tatsuyuki4,FUJIMURA Shigeru5

Affiliation:

1. Institute of Fluid Science, Tohoku University

2. Graduate School of Engineering, Tohoku University

3. Hirayama Manufacturing Corporation

4. Okayama University of Science

5. Tohoku Medical and Pharmaceutical University

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference23 articles.

1. Boudam, M. K., Moisan, M., Saoudi, B., Popovici, C., Gherardi, N. and Massines, F., Bacterial spore inactivation by atmospheric-pressure plasmas in the presence or absence of UV photons as obtained with the same gas mixture, Journal of Physics D: Applied Physics, 39 (2006), pp.3494-3507.

2. Dobrynin, D., Fridman, G., Mukhin, Y. V., Wynosky-Dolfi, M. A., Rieger, J., Rest, R. F., Gutsol, A. F. and Fridman, A., Cold Plasma Inactivation of Bacillus cereus and bacillus anthracis (Anthrax) spore, IEEE Transactions of Plasma Science, Vol. 38, No. 8 (2010), pp.1878-1884.

3. Hayashi, N., Akiyoshi, Y., Kobayashi, Y., Kanda, K., Ohshima, K. and Goto, M., Inactivation characteristics of Bacillus thuringiensis spore in liquid using atmospheric torch plasma using oxygen, Elsevier, Vacuum, 88 (2013), pp.173-176.

4. Hertwig, C., Reineke, K., Rauh, C. and Schlüter, O., Factors involved in Bacillus spore's resistance to cold atmospheric pressure plasma, Innovative Food Science and Emerging Technologies, 43 (2017), pp.173–181.

5. Hojinik, N., Modic, M., Ni, Y., Filipic, G., Cvelbar, U. and Waish, J. L., Effective Fungal Spore Inactivation with an Environmentally Friendly Approach Based on Atmospheric Pressure Air Plasma, Environmental Science and Technology, 53 (2019), pp.1893-1904.

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