HHO气体用于PBII处理灭菌大肠杆菌的效果研究

K. Kakugawa, K. Nosaki, S. Umemoto, T. Noda, T. Tanaka
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引用次数: 0

摘要

等离子体离子注入(PBII)是一种表面修饰技术,它使用等离子体中的负高压脉冲将离子均匀地植入样品上。该技术通过缩小样品附近形成的离子鞘的宽度并使鞘的形状与样品紧密对齐来实现,特别是对于形状复杂的样品。重点探讨了PBII在微生物灭菌中的应用潜力。特别是,我们的目标是确定使用PBII对大肠杆菌(一种可以污染食物的微生物)进行灭菌的最合适气体种类。我们的研究结果表明,氮气或氧气可以随着施加电压的增加而增加灭菌效果。所提供的导电不锈钢用作样品固定的培养皿。相比之下,即使在−2 kV的低电压下,与其他气体相比,使用由水电解产生的与过氧化氢气体相比无害的HHO气体时,灭菌效果也更有效。因此,在PBII中使用HHO气体可以实现比以前灭菌食品时更温和的灭菌条件。
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Effectiveness of Using HHO Gas for PBII Treatment in Sterilizing Escherichia Coli
— Plasma-based ion implantation (PBII) is a surface modification technique that uses a negative high-voltage pulse in plasma to implant ions uniformly onto a sample. This technique is performed by narrowing the width of the ion sheath formed near the sample and aligning the shape of the sheath closely to the sample, particularly for complexly shaped samples. Our investigation focuses on the application potential of PBII in sterilizing microorganisms. In particular, we aimed to determine the most suitable gas species for sterilization using PBII on Escherichia coli, a type of microorganism that can contaminate food. Our findings demonstrate that nitrogen or oxygen gas could increase the sterilization effect with an increase in applied voltage. The provided conductive stainless-steel is used as the Petri dish for sample fixation. By contrast, sterilization becomes more effective when HHO gas, which is produced by water electrolysis and is non-hazardous compared with peroxide gas, is utilized compared with other gases, even at a low applied voltage of −2 kV. Therefore, the use of HHO gas in PBII could enable milder sterilization conditions than previously attainable when sterilizing foodstuffs.
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来源期刊
Journal of Computational Technologies
Journal of Computational Technologies Mathematics-Applied Mathematics
CiteScore
0.60
自引率
0.00%
发文量
37
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