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首页> 外文期刊>Angewandte Chemie >Dynamic X-May Diffraction Computed Tomography Reveals Real-Time Insight into Catalyst Active Phase Evolution
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Dynamic X-May Diffraction Computed Tomography Reveals Real-Time Insight into Catalyst Active Phase Evolution

机译:动态X射线5月衍射计算机断层扫描显示对催化剂活性相演化的实时了解。

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摘要

Metals and metal oxides anchored to porous support materials are widely used as heterogeneous catalysts in a number of important industrial chemical processes. These catalysts owe their activity to the formation of unique metal/metal oxide support interactions, typically resulting in highly dispersed 'actives' stabilized in a particular electronic or coordination state. They are employed in fixed-bed reactors as extruded or pelletized millimeter-sized "catalyst bodies" minimizing pressure drops along the length of the reactor. Since the efficiency of the whole catalytic system depends on the behavior and efficiency of the catalyst body per se, its design has very great importance.
机译:固定在多孔载体材料上的金属和金属氧化物在许多重要的工业化学过程中被广泛用作非均相催化剂。这些催化剂的活性归因于独特的金属/金属氧化物载体相互作用的形成,通常导致高度分散的“活性物质”稳定在特定的电子或配位态。它们被用作固定床反应器,是挤出或造粒的毫米大小的“催化剂体”,可将沿反应器长度方向的压降降至最低。由于整个催化体系的效率取决于催化剂本体本身的行为和效率,因此其设计具有非常重要的意义。

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