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首页> 外文期刊>ChemCatChem >Characterization of a Fluidized Catalytic Cracking Catalyst on Ensemble and Individual Particle Level by X-ray Micro-and Nanotomography, Micro-X-ray Fluorescence, and Micro-X-ray Diffraction
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Characterization of a Fluidized Catalytic Cracking Catalyst on Ensemble and Individual Particle Level by X-ray Micro-and Nanotomography, Micro-X-ray Fluorescence, and Micro-X-ray Diffraction

机译:通过X射线微 - 纳米分析,微X射线荧光和微X射线衍射对整体和个体颗粒水平流化催化裂化催化剂的表征

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摘要

A combination of advanced characterization techniques: synchrotron X-ray micro- and nanotomography, micro-X-ray fluorescence, and micro-XRD have been used to characterize a commercial spent equilibrium fluid catalytic cracking catalyst (ECAT) at both the ensemble and individual particle level. At the ensemble level, X-ray microtomography was used to determine the average size, shape, and respective distributions of over 1200 individual catalyst particles. This information is important to determine performance in commercial operation. It is shown that a large fraction of the particles contained large internal voids (5-80m diameter), and these voids likely aid the accessibility for large hydrocarbon molecules. At the individual particle level, by using X-ray nanotomography, these voids were visualized at a much smaller scale (approximate to 100nm-12m in diameter). In addition, the individual phases that are present in the particle, for example, TiO2 and clay, are readily visualized in 3D. Micro-X-ray fluorescence (XRF) was used to map, and semiquantitatively determine, both the contaminant (Ni, V, Fe) and inherent (La) catalyst elemental distributions. The distribution of zeoliteY in the ECAT particle was inferred from the La XRF map. Micro-XRD determined the lattice constant of the zeoliteY at the individual catalyst particle level. This in-depth characterization study at the ensemble and individual ECAT particle level presents a robust methodology that provides an understanding of the ECAT at both the micro- and nanometer scales.
机译:高级表征技术的组合:同步X射线微谱和纳米分析,微X射线荧光和微XRD用于在整体和个体颗粒上表征商业用过的平衡流体催化裂化催化剂(ECAT)等级。在集合电平,用于确定超过1200个单独的催化剂颗粒的平均尺寸,形状和各个分布。此信息对于确定商业运营中的性能非常重要。结果表明,大部分颗粒包含大的内部空隙(直径为5-80米),并且这些空隙可能助涉大型烃分子的可接受性。在各个颗粒水平上,通过使用X射线纳米分析,这些空隙以更小的刻度(直径为100nm-12m)可视化。另外,存在于颗粒中的单个相,例如TiO 2和粘土,在3D中容易地可视化。使用微X射线荧光(XRF)来映射,并且可以确定地确定污染物(Ni,V,Fe)和固有(LA)催化剂元素分布。从La XRF地图推断出Ecat颗粒中沸石的分布。微XRD在单个催化剂颗粒水平上确定沸石的晶格常数。在集合和个人ECAT粒子水平的这种深入表征研究具有鲁棒方法,该方法提供了对微型和纳米尺度的ECAT的理解。

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