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Catalytic Combustion of Methane over Pd/γ-Al_2O_3 in a Monolithic Reactor: Kinetic Study

机译:整体反应器中Pd /γ-Al_2O_3上甲烷的催化燃烧:动力学研究

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摘要

This paper focuses on the kinetic study of the methane combustion over a Pd/γ-Al_2O_3 catalyst deposited on a cordierite monolithic structure. The experiments were performed in an integral reactor, and the operating conditions were chosen to adequately represent the operation of a domestic-scale catalytic heater, i.e. relatively high volumetric flowrates and high methane molar fractions. The experimental data together with an appropriate model for the integral reactor were used to estimate the intrinsic kinetic parameters for a power law type reaction. For the laboratory catalyst, internal mass transfer limitations become appreciable for temperatures higher than 430℃. A heterogeneous reactor model, which includes the evaluation of the methane concentration gradient inside the washcoat, allowed to reproduce with high accuracy the laboratory data.
机译:本文重点研究了堇青石整体结构上沉积的Pd /γ-Al_2O_3催化剂上甲烷燃烧的动力学。实验在一体式反应器中进行,并且选择操作条件以充分代表家用规模的催化加热器的操作,即相对较高的体积流量和较高的甲烷摩尔分数。实验数据和适用于整体反应器的模型一起用于估算幂律型反应的内在动力学参数。对于实验室催化剂,内部传质限制在温度高于430℃时变得明显。包括评估修补基面涂层内部甲烷浓度梯度的异构反应器模型,可以高精度再现实验室数据。

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