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首页> 外文期刊>Angewandte Chemie >In Situ Microfocus Chemical Computed Tomography of the Composition of a Single Catalyst Particle During Hydrogenation of Nitrobenzene in the Liquid Phase
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In Situ Microfocus Chemical Computed Tomography of the Composition of a Single Catalyst Particle During Hydrogenation of Nitrobenzene in the Liquid Phase

机译:液相硝基苯加氢过程中单个催化剂颗粒组成的原位微聚焦化学计算机断层扫描

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摘要

Heterogeneous catalysis performed in the liquid phase is an important type of catalytic process which is rarely studied in situ. Using microfocus X-ray fluorescence and X-ray diffraction computed tomography (m-XRF-CT, m-XRD-CT) in combination with X-ray absorption near-edge spectroscopy (XANES), we have determined the active state of a Mo-promoted Pt/C catalyst (NanoSelect) for the liquid-phase hydrogenation of nitrobenzene under standard operating conditions. First, m-XRF-CT and m-XRD-CT reveal the active state of Pt catalyst to be reduced, noncrystalline, and evenly dispersed across the support surface. Second, imaging of the Pt and Mo distribution reveals they are highly stable on the support and not prone to leaching during the reaction. This study demonstrates the ability of chemical computed tomography to image the nature and spatial distribution of catalysts under reaction conditions.
机译:在液相中进行的非均相催化是重要的催化方法类型,很少在现场进行研究。使用微焦点X射线荧光和X射线衍射计算机断层扫描(m-XRF-CT,m-XRD-CT)结合X射线吸收近边缘光谱法(XANES),我们确定了Mo的活性态促进的Pt / C催化剂(NanoSelect)在标准操作条件下用于硝基苯的液相加氢。首先,m-XRF-CT和m-XRD-CT显示Pt催化剂的活性态被还原,非晶态并均匀地分散在整个载体表面上。其次,对Pt和Mo分布的成像显示它们在载体上非常稳定,并且在反应过程中不易浸出。这项研究证明了化学计算机断层成像能够在反应条件下成像催化剂的性质和空间分布。

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