常压等离子体重整甲烷制氢

M. Tada, A. Nagata
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引用次数: 0

摘要

采用介质阻挡放电(DBD)等离子体重整技术,研究了不产生一氧化碳和二氧化碳等有害气体的甲烷气体制氢技术。对DBD等离子体重整过程中由于反应器间隙和气体对流时间影响的气体流速控制进行了产氢性能评价。采用宽间隙等离子体反应器,在较高的输入功率范围内实现了高产氢。此外,还发现在较低的输入功率下,利用密闭反应器中产生的DBD等离子体对诱导气体的对流eŠect与气体相结合,制氢效率较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrogen Fuel Production from Methane Gas Using Plasma Reforming under Atmospheric Pressure
Hydrogen fuel production from methane gas is studied by using the plasma reforming technology using dielectric barrier discharge (DBD) which is eco-friendly method without generating harmful gas of carbon monoxide or carbon dioxide. Hydrogen production properties were evaluated in velocity control of gas ‰ow due to the reactor gaps and gas convection time during DBD plasma reforming. High hydrogen production was attainable by using the plasma reactor having wide gap at higher input power region. Moreover, it was found that hydrogen production was highly reformed at lower input power by making use of the convection eŠect of induced gas ‰ow by the DBD plasma generated in airtight reactor ˆlled up with the gas.
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