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Simulation study of the effect of feed moisture on autothermal reforming in short contact time catalytic micro channels

机译:进料水分对短接触时间催化微通道自热重整影响的模拟研究

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In this work, a set of cylindrical rhodium coated micro channels with diameter range of 0.2 -0.8 mm and a length of 1 cm is considered to simulate the behavior of the autothermal reforming reactions of methane to synthesis gas. A one-dimensional heterogeneous model is used to describe the flow field. Gas phase reactions are modeled by GRI 3.0 mechanism, and a 38-step detailed surface mechanism over a rhodium catalyst is considered for catalytic reactions. The effect of feed moisture content on product selectivity and yield, minimum required preheat temperature, length of the reforming and oxidation zones, and reactor thermal efficiency is studied at two different operating pressures of 1 and 20 atm, methane to oxygen feed ratios of 1.2-2.5, and pore diameters of 0.2-0.8 mm. Moreover, the simulation results are compared with the experimental data of Michael et al. [13].
机译:在这项工作中,一组直径为0.2 -0.8 mm,长度为1 cm的圆柱形铑涂层微通道被认为是模拟甲烷自热重整反应生成合成气的行为。一维异质模型用于描述流场。气相反应是通过GRI 3.0机理建模的,并考虑了铑催化剂上38步的详细表面机理用于催化反应。研究了进料水分含量对产品选择性和产率,最低要求的预热温度,重整和氧化区长度以及反应器热效率在两种不同的工作压力1和20 atm,甲烷与氧气进料比为1.2- 2.5,孔径为0.2-0.8毫米。此外,将仿真结果与Michael等人的实验数据进行了比较。 [13]。

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