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5D operando tomographic diffraction imaging of a catalyst bed

机译:催化剂床的5D操作层析衍射成像

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摘要

We report the results from the first 5D tomographic diffraction imaging experiment of a complex Ni–Pd/CeO2–ZrO2/Al2O3 catalyst used for methane reforming. This five-dimensional (three spatial, one scattering and one dimension to denote time/imposed state) approach enabled us to track the chemical evolution of many particles across the catalyst bed and relate these changes to the gas environment that the particles experience. Rietveld analysis of some 2 × 106 diffraction patterns allowed us to extract heterogeneities in the catalyst from the Å to the nm and to the μm scale (3D maps corresponding to unit cell lattice parameters, crystallite sizes and phase distribution maps respectively) under different chemical environments. We are able to capture the evolution of the Ni-containing species and gain a more complete insight into the multiple roles of the CeO2-ZrO2 promoters and the reasons behind the partial deactivation of the catalyst during partial oxidation of methane.
机译:我们报告了用于甲烷重整的复杂Ni-Pd / CeO2-ZrO2 / Al2O3催化剂的第一个5D层析成像实验的结果。这种五维(三个空间,一个散射和一个维来表示时间/施加的状态)方法使我们能够跟踪整个催化剂床层上许多颗粒的化学演化,并将这些变化与颗粒所经历的气体环境联系起来。 Rietveld分析了一些2×10 6 衍射图,使我们能够从Å到nm和μm尺度上提取催化剂中的非均质性(对应于晶胞参数,微晶尺寸和相的3D图分布图)。我们能够捕捉到含镍物种的进化,并获得对CeO2-ZrO2促进剂的多重作用以及甲烷部分氧化过程中催化剂部分失活的原因的更完整的了解。

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