首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Influence of electrode configuration on ozone synthesis and microdischarge property in dielectric barrier discharge reactor
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Influence of electrode configuration on ozone synthesis and microdischarge property in dielectric barrier discharge reactor

机译:电极构型对介质阻挡放电反应器中臭氧合成和微放电性能的影响

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Characteristics of a dielectric barrier discharge were investigated experimentally to clarify an influence of an electrode configuration on ozone synthesis and a microdischarge behavior. Three difference configurations: plane, trench and multipoint were employed as ground electrode. The alumina dielectric barrier coated plane electrode was used as a high-voltage electrode, to which a sinusoidal high-voltage was applied with 10 kHz frequency. Pure oxygen gas was fed into the reactor with gas flow rate of 5 L/min. The maximum yielding rate increased from 80 to 120 g/kWh by changing an electrode configuration from plane to multipoint, which has 528 number of a right-pyramid shape projection on a 6 cm x 22 cm plane electrode. The yielding rate was strongly dependent on a produced ozone concentration in the plane electrode case, whereas slightly depended on the concentration in the multipoint electrode case. The electrode configuration also affected a number of the microdischarges per one applied voltage cycle. The multipoint electrode showed the largest number of microdischarges at same input energy. (C) 2008 Elsevier Ltd. All rights reserved.
机译:通过实验研究介电势垒放电的特性,以弄清电极结构对臭氧合成和微放电行为的影响。三种不同的配置:平面,沟槽和多点用作接地电极。将涂覆有氧化铝介电阻挡层的平面电极用作高压电极,以10 kHz的频率对其施加正弦形高压。将纯氧气以5 L / min的气体流速送入反应器。通过将电极配置从平面更改为多点,最大生产率从80 g / kWh增加到120 g / kWh,该电极在6 cm x 22 cm平面电极上具有528个右金字塔形投影。在平面电极情况下,产率主要取决于所产生的臭氧浓度,而在多点电极情况下则略微取决于浓度。电极配置还影响每个施加的电压周期中的微放电数量。在相同的输入能量下,多点电极显示出最大数量的微放电。 (C)2008 Elsevier Ltd.保留所有权利。

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