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Negative DC Corona Discharge for Nitric Oxide Removal in Pin-To-Water Electrode Configuration

机译:针对水电极配置中用于去除一氧化氮的负DC电晕放电

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Due to its adverse impact on both the environment and human health, more rigorous regulation of the emission of nitric oxides is being enforced [1, 2]. Selective catalytic reduction is currently the most efficient method of emission reduction, but non-thermal plasma has also been researched extensively as a potential mitigating technology. In this paper, negative d.c. corona discharge was investigated for nitric oxide removal using pin-to-water electrode configuration. The pin electrode was surrounded by a thin glass tube used as the gas outlet, in order to maximize the contact time between the generated plasma and the nitric oxide. Water vapor produced from the water surface plays a crucial role for nitric oxide removal, due to the formation of reactive species, including OH radicals.
机译:由于其对环境和人类健康都有不利影响,因此正在对氮氧化物的排放进行更严格的调节[1、2]。选择性催化还原是目前最有效的减排方法,但非热等离子体也已被广泛研究作为一种潜在的缓解技术。在本文中,负直流电使用针-水电极配置研究了电晕放电以去除一氧化氮。为了使所产生的等离子体与一氧化氮之间的接触时间最大化,针状电极被用作气体出口的细玻璃管围绕。由于形成了包括OH自由基在内的反应性物种,从水表面产生的水蒸气对一氧化氮的去除起着至关重要的作用。

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