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The Effects of Different Electrode Holes on Ozone Generation

机译:不同电极孔对臭氧生成的影响

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The research investigates the effects of different electrode holes and configuration parameters of ozone chambers on ozone generation. Ozone has been widely used for various applications without producing residues that are harmful to the environment. In most applications, higher ozone concentrations are required to fulfill this task. This study is an attempt to generate ozone at high concentration with parameters such as the holes shape of perforated electrodes, the gap spacing, and the input voltage. The total capacitance has been measured through this system. The effect of capacitance on ozone concentration was obtained by measuring the density of the charge across the gap while the discharge occurred. The amount of charge formed, which was then split, affected the increase in ozone concentration. The total capacitance also affected the ozone generation. It was found that maximum ozone concentration of 2185.31 ppm was obtained when using the hexagonal (honeycomb) shape of a perforated stainless electrode with 1 mm gap spacing, and 772.14 ppm was obtained when using the round shape of a perforated aluminum electrode with 1 mm gap spacing. It shows that the hexagonal (honeycomb) shape of perforated stainless electrode contributes to high electric field strength between the gap spacing, leading to high ozone concentration.
机译:该研究研究了臭氧室对臭氧生成的不同电极孔和配置参数的影响。臭氧已广泛用于各种应用,而不会产生对环境有害的残留物。在大多数应用中,需要更高的臭氧浓度来满足这项任务。该研究是尝试以高浓度产生臭氧,其参数如穿孔电极的孔形状,间隙间隔和输入电压。通过该系统测量了总电容。通过在放电发生时测量间隙的电荷密度来获得电容对臭氧浓度的影响。然后分裂的电荷量影响了臭氧浓度的增加。总电容也影响了臭氧生成。发现使用具有1mm间隙间距的穿孔不锈钢电极的六边形(蜂窝状)形状时获得最大臭氧浓度为2185.31ppm,当使用具有1mm间隙的穿孔铝电极的圆形时,获得772.14ppm间距。它表明,穿孔不锈钢电极的六边形(蜂窝状)形状有助于间隙间距之间的高电场强度,导致高臭氧浓度。

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