催化作用
辉光放电
大气压力
等离子体
氮气
材料科学
比能量
活化能
体积流量
能源成本
化学反应器
分析化学(期刊)
化学工程
化学
环境科学
核工程
机械
环境化学
热力学
有机化学
气象学
工程类
物理
建筑工程
量子力学
作者
Xuekai Pei,Dogan Gidon,David B. Graves
标识
DOI:10.1088/1361-6463/ab5095
摘要
Abstract We report on factors influencing the specific energy costs of producing NO x from pin-to-pin DC glow discharges in air at atmospheric pressure. Discharge current, gap distance, gas flowrate, exterior tube wall temperature and the presence and position of activated Al 2 O 3 catalyst powder were examined. The presence of heated catalyst adjacent to the plasma zone improved energy efficiency by as much as 20% at low flows, but the most energy efficient conditions were found at the highest flowrates that allowed a stable discharge (about 10–15 l min −1 ). Under these conditions, the catalyst had no effect on efficiency in the present study. The lowest specific energy cost was observed to be between about 200–250 GJ/tN. The transport of active chemical species and energy are likely key factors controlling the specific energy costs of NO x production in the presence of a catalyst. Air plasma device design and operating conditions must ensure that plasma-generated active intermediate chemical species transport is optimally coupled with catalytically active surfaces.
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