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Bacterial Decontamination of the Inner Wall of Narrow Tubes by a Nitrogen Afterglow at Atmospheric Pressure and its Relation to Local Atomic Nitrogen Concentration

机译:大气压下的氮气余辉对窄管内壁的细菌净化作用及其与局部原子氮浓度的关系

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A quartz tube with inner wall contaminated by Escherichia coli bacteria is treated using an atmospheric pressure nitrogen afterglow flowing at 20 SLM. The biocidal efficacy is measured locally at both the input and at the output of a 57 cm tube, giving a reduction of survivors of around 5 and 4 log for a 40 min treatment time, respectively. A weak contribution of gas heating is observed and delineated from the effect uniquely due to the plasma afterglow. Based on previous work, a model allows the estimation of the variation of the axial concentration of N atoms, assumed to be the main active species, and its correlation to the biocidal effect of the afterglow. Extrapolation of the model opens the perspective of the decontamination of longer tubes with smaller diameters such as catheter and endoscope ducts.
机译:使用在20 SLM下流动的常压氮气余辉处理带有被大肠杆菌细菌污染的内壁的石英管。在57厘米试管的输入端和输出端均局部测量了杀菌效力,在40分钟的治疗时间内,存活者分别减少了约5和4 log。观察到气体加热的微弱贡献,并且由于等离子余辉而唯一地从该效应中描绘出来。根据先前的工作,模型可以估算N原子的轴向浓度(假定为主要活性物质)的变化及其与余辉生物杀灭作用的相关性。模型的外推打开了对直径较小的较长管(例如导管和内窥镜导管)进行净化的视野。

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