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首页> 外文期刊>Catalysis science & technology >Catalytic propane reforming mechanism over Zr-doped CeO2 (111)
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Catalytic propane reforming mechanism over Zr-doped CeO2 (111)

机译:掺杂ZR的CEO2的催化丙烷改革机制(111)

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摘要

Elucidation of the elementary reaction processes involved in hydrocarbon oxidation on oxide catalysts can help guide active site optimization. We use density functional theory (DFT) methods to examine the reforming of propane over the Zr-doped CeO2 (111) surface. Numerous modeling and mechanistic questions arise in modeling this multistep reaction on oxides. The surface redox and coverage state in the reaction environment impacts energetics and must be considered. Phase diagrams of Zr-doped and pure CeO2 (111) are created based upon the partial pressure of oxygen and hydrogen, demonstrating that the surface will be reduced under operating conditions. All elementary energetics along the preferential path for propane reforming were identified, and differences in path with oxygen pressure variance were identified. The reaction path varies depending on the oxygen chemical potential as this alters at which step in the mechanism the surface will re-oxidize.
机译:阐明参与氧化催化剂烃氧化的基本反应过程可以帮助指导主动位点优化。 我们使用密度功能理论(DFT)方法来检查丙烷在ZR掺杂的CEO2(111)表面上的重构。 在对氧化物上的多步反应进行建模时,出现了许多建模和机械问题。 反应环境中的表面氧化还原和覆盖状态会影响能量学,必须考虑。 基于氧气和氢的部分压力,创建了ZR掺杂和纯CEO2(111)的相图(111),这表明表面将在工作条件下降低。 鉴定了沿丙烷改革的优先路径的所有基本能量学,并确定了氧气压方差的路径差异。 反应路径因氧化学电位而变化,因为该机理中的哪个步骤会重新氧化。

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