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Basic Study of Remote Disinfection and Sterilization Effect by Using Atmospheric Microplasma

机译:大气微粒对远距离消毒杀菌作用的基础研究

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Microplasma has the advantage of reducing the discharge voltage compared with other atmospheric plasmas. It is generated at atmospheric pressure at only around 1.0 kV since its discharge gap is on the order of micrometers. The experiment was performed with air and argon as the process gases, to confirm the influence of different radical species in the microplasma, on the bacteria cultures. The process gas flows through the parallel plate electrodes with holes which were covered with dielectric material and energized at about 1.0 kV. The active species generated by the dielectric-barrier discharge microplasma flows toward the exposed Escherichia coli on the agar media at a distance of 2 mm from the electrodes. The process is known as remote microplasma sterilization method. Microplasma generated by both air and Ar is effective for sterilization. Observation by the scanning-electron-microscope images shows that the E. coli had a shrunk shape after the microplasma treatment.
机译:与其他大气等离子体相比,微等离子体具有降低放电电压的优势。由于它的放电间隙约为微米,因此它仅在大气压下约1.0 kV时产生。以空气和氩气为处理气体进行了实验,以确认微等离子体中不同自由基种类对细菌培养的影响。处理气体流过带有孔的平行平板电极,这些孔被介电材料覆盖并以约1.0 kV的电压通电。由电介质阻挡放电微等离子体产生的活性物质在琼脂培养基上与电极相距2 mm的距离流向暴露的大肠杆菌。该过程被称为远程微等离子体灭菌方法。空气和Ar产生的微等离子体对杀菌有效。通过扫描电子显微镜图像的观察表明,经过等离子处理后,大肠杆菌具有收缩的形状。

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