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Atmospheric pulsed DBD plasma jet for study on bacterial inactivation

机译:大气脉冲DBD等离子射流用于细菌灭活的研究

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A novel plasma jet with a plane-to-plane DBD structure working at atmospheric pressure has been developed. This jet is operated by a sub-microsecond pulsed voltage with a repetition rate of 1-10 kHz range. The working gas, helium, is fed into the plasma jet. The electrical property of the discharge has been studied by means of a classical DBD model. By fitting the fine structure of the emission bands of N3 to a model, plasma gas is found to be cooled to near room temperature (~300 K) at 15 mm away from the jet nozzle exit, which is also verified by a thermocouple. Based on the analysis of the Hβ Stark broadening, the electron density inside the plasma jet nozzle is evaluated to be in the order of 1014 cm-3. Finally, the preliminary experiment confirmed the feasibility of disinfecting E.coli cells. It shows that adding oxygen could enhance the inactivating effect greatly and with 4% oxygen, the highest effect was obtained.
机译:已经开发了一种在大气压下具有平面对平面DBD结构的新型等离子体射流。该射流由亚微秒脉冲电压操作,重复频率范围为1-10 kHz。将工作气体氦气送入等离子流。放电的电学特性已经通过经典的DBD模型进行了研究。通过将N3发射带的精细结构拟合到模型,可以发现等离子气体在距喷嘴出口15mm处冷却至接近室温(〜300 K),这也已通过热电偶验证。基于对HβStark加宽的分析,等离子喷嘴内部的电子密度估计为1014 cm-3左右。最后,初步实验证实了对大肠杆菌细胞进行消毒的可行性。结果表明,添加氧气可以大大提高其灭活效果,在4%的氧气条件下,灭活效果最好。

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