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Experimental Study on Medical Ozone Generation in Double Dielectric Barrier Discharge(DDBD) with Spiral-Spiral Electrodes

机译:用螺旋电极进行双介质屏障放电(DDBD)医用臭氧产生的实验研究

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Double Dielectric Barrier Discharge (DDBD) generator is a reactor that is considered more qualified as an ozone reactor for medical applications because there is space between two barriers that function as a place for the flow of pure oxygen. Research on optimization of medical ozone production with Double Dielectric Barrier Discharge (DDBD) technology with spiral-spiral electrode configuration has been carried out. The purpose of this study is to obtain the optimum dose of ozone for applications in the medical field. Variations in the number of coils on electrodes (N), namely 30, 40, 50 and high voltage AC used with voltage variations from 0.5 to 2.3 kV and flowrate variations between 0.2 to 1 L/min with 0.2 intervals. The frequency used is 30 Hz. The results showed that the higher the voltage with a constant flow rate, the higher the current produced so that the ozone concentration obtained was also higher. However, the more the number of turns with a constant voltage, the smaller the resulting concentration. In the configuration of the number of coils, the ozone dosage produced is between 67.2 to 537.6 mg.
机译:双介质屏障放电(DDBD)发电机是一种反应器,其被认为是用于医疗应用的臭氧反应器的反应器,因为在两个屏障之间存在空间,可以作为纯氧流动的位置。采用双介质屏障放电(DDBD)技术进行了用螺旋螺旋电极构造优化的研究。本研究的目的是获得医学领域应用的最佳剂量臭氧。电极(n)上的线圈数,即30,40,50和高电压交流电压变化的变化在0.5至2.3kV的电压变化和0.2间隔之间的流量变化和0.2间隔之间的流量变化。使用的频率为30 Hz。结果表明,恒定流速的电压越高,所产生的电流越高,所获得的臭氧浓度也更高。然而,恒定电压的匝数越多,所得浓度越小。在线圈数的配置中,产生的臭氧剂量在67.2至537.6mg之间。

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