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Honeycomb discharge generated with a single high voltage power supply for activating catalyst

机译:蜂窝状放电产生,具有用于激活催化剂的单个高压电源

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Atmospheric pressure discharge plasma has been widely studied with the intention to apply for many fields, especially to environmental protection. Diesel exhaust cleaning using the non-thermal plasma is one of the most promising applications. We have studied diesel exhaust cleaning using the combination of catalyst and discharge plasma. We have developed a novel way of combining honeycomb catalyst and discharge plasma named "honeycomb discharge", in which seeding discharge generated by DBD is expanded into capillaries of honeycomb catalyst due to DC high voltage application. This paper presents a new configuration of honeycomb discharge reactor which can be operated by a single high voltage power supply. NO_x reduction performance using the newly proposed honeycomb discharge reactor and simulated diesel exhaust is presented in this paper. Characteristics of the capillary discharge such as stability, uniformity, onset/flashover voltage and power consumption, were observed against various humidity and temperatures in order to evaluate influence of temperature and humidity on the honeycomb discharge.
机译:大气压放电等离子体已被广泛研究,目的是申请许多领域,尤其是环境保护。使用非热等离子体的柴油排气清洁是最有前途的应用之一。我们使用催化剂和排出等离子体的组合研究了柴油排气清洁。我们开发了一种结合蜂窝催化剂和排出等离子体的新颖方法,命名为“蜂窝状放电”,其中由于DC高压施加,DBD产生的播种放电膨胀成蜂窝催化剂的毛细血管。本文介绍了一种新的蜂窝放电反应器配置,可通过单个高压电源操作。本文介绍了使用新提出的蜂窝放电反应器和模拟柴油排气的NO_X降低性能。毛细管放电的特性,例如稳定性,均匀性,发作/闪络电压和功耗,用于各种湿度和温度,以评估温度和湿度对蜂窝状放电的影响。

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