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Novel catalytic reactor for oxidative reforming of methanol

机译:用于甲醇氧化重整的新型催化反应器

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Oxidative steam reforming (OSR) of methanol is shown to produce extremely high hydrogen yield. Specific hydrogen production rates as high as 425 kW(t) per liter of reactor volume were demonstrated in a novel Microlith(R)-based catalytic reactor. At reduced space velocities hydrogen concentration in the reformate stream was as high as 50%, while CO concentration was as low as 1.2%. The thermal efficiency of the OSR process is greater than 80%.It is shown that the autothermal OSR process consists of three reactions-methanol oxidation, methanol decomposition and water gas shift. These reactions have different kinetic rates and progress in an overlapping sequence along the catalyst bed. A radial flow catalyst configuration enables varying gas flow velocity to accommodate the different kinetic rates and heat release characteristics of these reactions. This allows a flat temperature profile and approach to equilibrium product composition to be achieved in a single catalyst bed. (C) 2004 Elsevier B.V. All rights reserved.
机译:甲醇的氧化蒸汽重整(OSR)已显示出极高的氢气产率。在新型的基于Microlith®的催化反应器中,氢的比产氢率高达425 kW(t)/升。在降低的空间速度下,重整产品物流中的氢浓度高达50%,而CO浓度则低至1.2%。 OSR工艺的热效率大于80%。表明自热OSR工艺由甲醇氧化,甲醇分解和水煤气变换三个反应组成。这些反应具有不同的动力学速率,并且沿着催化剂床以重叠的顺序进行。径向流动催化剂构型能够改变气体流速,以适应这些反应的不同动力学速率和放热特性。这允许在单个催化剂床上实现平坦的温度曲线并达到平衡产物组成的方法。 (C)2004 Elsevier B.V.保留所有权利。

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