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首页> 外文期刊>Plasma Chemistry and Plasma Processing >Dilute Methane Treatment by Atmospheric Pressure Dielectric Barrier Discharge: Effects of Water Vapor
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Dilute Methane Treatment by Atmospheric Pressure Dielectric Barrier Discharge: Effects of Water Vapor

机译:大气压介质阻挡放电对甲烷的稀释处理:水蒸气的影响

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摘要

Oxidation of dilute methane in oxygen containing mixtures by atmospheric pressure dielectric barrier discharge at moderate temperature (below 150°C) has been studied with regard to the effect of water vapor. First, the impact of water vapor on methane conversion was studied in nitrogen. In dry nitrogen, methane was converted into hydrogen cyanide and hydrogen in the absence of oxidant. When water was added, it both acted as a scavenger in competition with methane for reactive nitrogen species and changed the reaction product speciation from HCN to carbon monoxide and carbon dioxide. The addition of water also led to the formation of hydrogen and nitrogen oxides. In the presence of oxygen, the addition of 1% water vapor enhanced methane conversion. Increasing water vapor content above 1% had a slight positive effect on methane conversion, and was found to enhance selectivity of the reaction products toward carbon dioxide over carbon monoxide.
机译:关于水蒸气的影响,已经研究了在中等温度(低于150°C)下通过大气压介质阻挡放电对含氧混合物中稀甲烷的氧化作用。首先,研究了氮气中水蒸气对甲烷转化的影响。在干燥的氮气中,甲烷在不存在氧化剂的情况下转化为氰化氢和氢气。当添加水时,它既与甲烷竞争用作清除活性氮的清除剂,又将反应产物的形态从HCN变为一氧化碳和二氧化碳。添加水还导致形成氢和氮氧化物。在氧气的存在下,添加1%的水蒸气可提高甲烷的转化率。将水蒸气含量增加到1%以上对甲烷转化有轻微的积极影响,并且发现提高了反应产物对二氧化碳的选择性超过一氧化碳。

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