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首页> 外文期刊>ChemCatChem >X-Ray Imaging of SAPO-34 Molecular Sieves at the Nanoscale: Influence of Steaming on the Methanol-to-Hydrocarbons Reaction
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X-Ray Imaging of SAPO-34 Molecular Sieves at the Nanoscale: Influence of Steaming on the Methanol-to-Hydrocarbons Reaction

机译:纳米载体的SAPO-34分子筛的X射线成像:蒸汽对甲醇 - 烃反应的影响

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The effect of a severe steaming treatment on the physicochemical properties and catalytic performance of H-SAPO-34 molecular sieves during the methanol-to-hydrocarbons (MTH) reaction has been investigated with a combination of scanning transmission X-ray microscopy (STXM), catalytic testing, and bulk characterization techniques, including ammonia temperature programmed desorption and 27Al and 29Si magic angle spinning nuclear magnetic resonance. For this purpose, two samples, namely a calcined and a steamed H-SAPO-34 catalyst powder, have been compared. It has been found that calcined H-SAPO-34 displays a high selectivity towards light olefins, yet shows a poor stability as compared to a zeolite H-ZSM-5 catalyst. Moreover, insitu STXM at the carbon K-edge during the MTH reaction allows construction of nanoscale chemical maps of the hydrocarbon species formed within the H-SAPO-34 aggregates as a function of reaction time and steam post-treatment. It was found that there is an initial preferential formation of coke precursor species within the core of the H-SAPO-34 aggregates. For longer times on stream the formation of the coke precursor species is extended to the outer regions, progressively filling the entire H-SAPO-34 catalyst particle. In contrast, the hydrothermally treated H-SAPO-34 showed similar reaction selectivity, but decreased activity and catalyst stability with respect to its calcined counterpart. These variations in MTH performance are related to a faster and more homogeneous formation of coke precursor species filling up the entire steamed H-SAPO-34 catalyst particle. Finally, the chemical imaging capabilities of the STXM method at the Al and Si K-edge are illustrated by visualizing the silicon islands at the nanoscale before and after steaming H-SAPO-34.
机译:对扫描透射X射线显微镜(STXM)的组合研究了严重蒸汽处理对H-SAPO-34分子筛的物理化学性能和H-SAP-34分子筛的催化性能的影响,催化试验和批量表征技术,包括氨温度编程的解吸和27AL和29SI魔法角旋转核磁共振。为此目的,已经比较了两个样品,即煅烧和蒸熟的H-SAPO-34催化剂粉末。已经发现煅烧的H-SAPO-34对光烯烃显示出高选择性,而与沸石H-ZSM-5催化剂相比,稳定性差。此外,在MTH反应期间碳k边缘处的INSITU STXM允许在H-SAPO-34聚集体中构建在H-SAPO-34聚集体中形成的烃物质的含量作为反应时间和蒸汽后处理。发现在H-SAPO-34聚集体的核心内焦化前体物种存在初始优先形成。对于在物流上的较长时间,焦化前体物种的形成延伸到外部区域,逐渐填充整个H-SAPO-34催化剂颗粒。相反,水热处理的H-SAPO-34显示出类似的反应选择性,但相对于其煅烧的对应物的活性和催化剂稳定性降低。 MTH性能的这些变化与烧结整个蒸汽的H-SAPO-34催化剂颗粒的焦化前体物种的更快和更均匀的形成有关。最后,通过在蒸汽H-SAPO-34之前和之后在纳米级显示硅岛来示出A1和Si K边缘处STXM方法的化学成像能力。

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