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Effect of Catalytic Cylinders on Autothermal Reforming of Methane for Hydrogen Production in a Microchamber Reactor

机译:催化气缸对微芯片反应器中氢产氢自热重整的影响

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A new multicylinder microchamber reactor is designed on autothermal reforming of methane for hydrogen production, and its performance and thermal behavior, that is, based on the reaction mechanism, is numerically investigated by varying the cylinder radius, cylinder spacing, and cylinder layout. The results show that larger cylinder radius can promote reforming reaction; the mass fraction of methane decreased from 26% to 21% with cylinder radius from 0.25 mm to 0.75 mm; compact cylinder spacing corresponds to more catalytic surface and the time to steady state is decreased from 40 s to 20 s; alteration of staggered and aligned cylinder layout at constant inlet flow rates does not result in significant difference in reactor performance and it can be neglected. The results provide an indication and optimize performance of reactor; it achieves higher conversion compared with other reforming reactors.
机译:通过改变气缸半径,汽缸间隔和圆柱布局,设计了一种新的多晶硅Microchamber反应器的甲烷的自动重整,即基于反应机构的性能和热行为,即,通过改变气缸半径,圆筒间隔和圆柱布局来进行数值研究。结果表明,较大的气缸半径可以促进重整反应;甲烷的质量分数从圆柱半径为0.25mm至0.75mm的圆柱半径下降26%至21%;紧凑型圆筒间距对应于更催化的表面,稳定状态从40秒降低到20秒;在恒定入口流速下交错和对准圆柱布局的改变不会导致反应器性能显着差异,并且可以忽略差异。结果提供了反应堆的指示和优化性能;与其他重整反应器相比,它达到更高的转化率。

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