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Optimization of a counter-flow microchannel reactor using hydrogen assisted catalytic combustion for steam reforming of methane

机译:利用氢气辅助催化燃烧进行甲烷蒸汽重整的逆流微通道反应器的优化

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The objective of this study is to optimize a microchannel reactor using hydrogen assisted catalytic combustion for steam reforming of methane. Hydrogen assisted catalytic combustion does not require preheating because the catalytic combustion of hydrogen occurs at room temperature. After start-up by hydrogen catalytic combustion, fuels of hydrogen and methane were changed to methane. The geometric configuration of the counter-flow reactor was optimized by the simulation model under steady state condition. The hydrogen flow rate in the counter-flow reactor was also optimized by transient simulations using the response surface methodology. As a result, the counter-flow reactor showed extremely short start-up time because of the optimized configuration and the optimized hydrogen flow rate. Hot spots were avoided because of the hydrogen shut-off after start-up. The operating characteristics of the counter-flow reactor were compared with those of the co-flow reactor.
机译:这项研究的目的是优化使用氢气辅助催化燃烧进行甲烷蒸汽重整的微通道反应器。氢辅助的催化燃烧不需要预热,因为氢的催化燃烧发生在室温下。通过氢气催化燃烧启动后,氢气和甲烷的燃料变为甲烷。通过仿真模型在稳态条件下优化了逆流反应器的几何构型。逆流反应器中的氢气流速也通过使用响应面方法的瞬态模拟进行了优化。结果,由于优化的配置和优化的氢气流速,逆流反应器的启动时间非常短。由于启动后氢气会关闭,因此避免了热点。将逆流反应器的操作特性与同流反应器的操作特性进行了比较。

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