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Influence of Gas Temperature in Atmospheric Non-Equilibrium Plasma on Bactericidal Effect

机译:气温对大气非平衡血浆对杀菌效应的影响

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In this study, the relationship between plasma gas temperature and the bactericidal effects on five of bacteria (Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus, Enterococcus faecalis and Bacillus cereus (spore)) in liquid was investigated using a temperature-controllable plasma source. We determined that the bactericidal ability improved as the plasma gas temperature increased. Specifically, the bactericidal ability on E. coli of 80-degrees C plasma was enhanced by as much as 6.3 times compared to that of 10-degrees C plasma. The relationship between plasma gas temperature and the amount of hydroxyl radical, singlet oxygen, hydrogen peroxide, and ozone introduced into the solution was investigated. Our results also showed that each reactive species production increased by 2.1, 9.0, 1.6, and 17 times, respectively, with 80-degrees C compared to 10-degrees C plasma. The relationship between the bactericidal ability and amount of reactive species indicated that singlet oxygen and ozone introduced to the solution mostly influenced the bactericidal ability as the plasma gas temperature increased. We conclude that the plasma gas temperature is the crucial parameter for plasma sterilization.
机译:在这项研究中,使用温度可控的血浆源研究了血浆气体温度与含有液体五种(大肠杆菌,假鼠,葡萄球菌,甲虫)和芽孢杆菌(孢子)的关系的关系。当血浆气体温度增加时,我们确定杀菌能力改善。具体地,与10摄氏度的血浆相比,通过80℃血浆的大肠杆菌的杀菌能力提高了多达6.3倍。研究了等离子体气体温度与羟基,单向氧,过氧化氢的量与溶液中引入溶液中的关系。我们的研究结果还表明,每种反应物种的产量分别增加2.1,9.0,1.6和17倍,而80℃与10摄氏度相比。杀菌能力与反应性物质的量之间的关系表明,随着等离子体气体温度的增加,术语引入溶液的单线氧和臭氧主要影响了杀菌能力。我们得出结论,等离子体气体温度是血浆灭菌的关键参数。

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