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A comparative study on the kinetics of carbon dioxide reforming of methane over Pt-Ni/Al2O3 catalyst: Effect of Pt/Ni Ratio

机译:Pt-Ni / Al2O3催化剂上甲烷二氧化碳重整动力学的比较研究:Pt / Ni比的影响

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Kinetics and surface reaction mechanism of CO2 reforming of methane (CDRM) was studied over 0.2%Pt-15%Ni/Al2O3 and 0.3%Pt-10%Ni/Al2O3 catalysts in order to determine the effect of Ni/Pt loading ratio on kinetic behavior. The simple power-law type rate expressions obtained for 0.3%Pt-10%Ni/Al2O3 and 0.2%Pt-l5%Ni/Al2O3 have reaction orders of 1 and 1.09 for CH4 and 0.87 and 1.40 for CO2, respectively, confirming methane consumption rate for 0.2%Pt-15%Ni/Al2O3 sample is more sensitive to the increase in partial pressure of CO. The comparative analysis of meaningful surface reaction models for the catalysts and the optimized model parameters obtained revealed that the surface reaction mechanisms are completely different. CO inhibition effect is stronger and CO2 utilization is suppressed on the catalyst with high Ni :Pt loading ratio. On the other hand, with a decrease in Ni:Pt loading ratio, CH4 adsorption becomes weaker, ability of utilizing CO2 as the oxygen source gets stronger and CO inhibition effect is practically eliminated.
机译:在0.2%Pt-15%Ni / Al2O3和0.3%Pt-10%Ni / Al2O3催化剂上研究了甲烷CO2重整的动力学和表面反应机理,以确定Ni / Pt负载比对动力学的影响。行为。对于0.3%Pt-10%Ni / Al2O3和0.2%Pt-15%Ni / Al2O3获得的简单幂律型速率表达式,CH4的反应阶数分别为1和1.09,CO2的反应阶数分别为0.87和1.40,这证实了甲烷的消耗0.2%Pt-15%Ni / Al2O3样品的添加速率对CO分压的增加更为敏感。对有意义的催化剂表面反应模型的比较分析和获得的优化模型参数表明,表面反应机理是完全不同的。 Ni:Pt负载率高的催化剂对CO的抑制作用更强,CO2的利用受到抑制。另一方面,随着Ni∶Pt负载率的降低,CH 4的吸附变弱,利用CO 2作为氧源的能力变强,实际上消除了CO抑制作用。

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