大気圧プラズマアクチュエータの流体制御によるメタン-水素改質の特性;大気圧プラズマアクチュエータの流体制御によるメタン-水素改質の特性;Characteristic of the Methane-hydrogen Reforming by the Fluid Control Using DBD Plasma Actuator

S. Yamanaka, Masako Shindo, Akiyoshi Nagata
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Abstract

Characteristic of the methane-hydrogen reforming is studied on the plasma reforming eŠects by the electrode structure and the additional magnetic ˆeld using the dielectric barrier discharge plasma actuator (DBDPA). The hydrogen production rate was improved by using the multiple electrode structure of DBDPA that achieved high rate of 10.6 as compared with 1.1 on single structure. Moreover, it was found that the DBD plasma conˆnement was improved by the eŠect of ‰uid control around DBDPA resulting from the addition of the magnetic ˆeld and the hydrogen product rate could increase to 13.4 by using the cusp ˆeld conˆguration.
大气压力等离子体致动器流体控制下的甲烷-氢改性的特性;大气压力等离子体致动器流体控制下的甲烷-氢改性的特性;Characteristic of the methan -hydrogen Reforming by the Fluid Control Using DBD Plasma Actuator
采用介质阻挡放电等离子体作动器(DBDPA),通过电极结构和外加磁场对等离子体重整eŠects中甲烷-氢重整特性进行了研究。采用DBDPA的多电极结构提高了制氢率,其产氢率达到了10.6,而单电极结构的产氢率为1.1。此外,还发现在DBDPA附近添加磁场可使DBD等离子体的粘度控制eŠect提高,采用尖场配置可使产氢率提高到13.4。
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