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High Pressure Catalytic Combustion of Methane Enriched Syngas

机译:甲烷富集合成气的高压催化燃烧

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In this work, tests of catalytic combustion of CH4 enriched syngas are carried out at high pressure (up to 9 bar) over a 20wt%LaMnO3/La-γAl2O3 based monolith. The effect of methane and CO2 addition on the catalyst performances is studied at fixed values of the heating value, H2/CO ratio (1.5) and total flow rate. Results show that ignition is driven by CO combustion, which is the most reactive fuel over LaMnO3 catalyst. Methane substitution and CO2 addition lead to higher ignition pressure and higher quenching pressure thus reducing the operability window: However, by reducing the methane substitution (i.e. increasing the mixture reactivity), the detrimental effect of CO2 decreases. As a conclusion, the perovskyte catalyst can be successfully applied to burn gasification products even in the presence of significant CH4 and CO2 contents.
机译:在这项工作中,CH 4富集的合成气的催化燃烧的试验在高压(最多9巴)上以20wt%的兰诺3 / La-γAl2O3的整料进行。在加热值的固定值,H 2 / Co比(1.5)和总流速下,研究了甲烷和CO 2对催化剂性能的影响。结果表明,点火是由CO燃烧驱动,这是兰诺3催化剂上最具反应性的燃料。甲烷取代和CO 2加入导致较高的点火压力和更高的淬火压力,从而减少可操作性窗口:然而,通过减少甲烷取代(即,增加混合物反应性),CO2的不利影响降低。结果,即使在存在显着的CH 4和CO 2含量,钙质催化剂也可以成功地应用于燃烧气化产物。

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