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Spatially and temporally resolved gas distributions around heterogeneous catalysts using infrared planar laser-induced fluorescence

机译:红外平面激光诱导荧光在非均相催化剂周围时空分布的气体分布

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摘要

Visualizing and measuring the gas distribution in close proximity to a working catalyst is crucial for understanding how the catalytic activity depends on the structure of the catalyst. However, existing methods are not able to fully determine the gas distribution during a catalytic process. Here we report on how the distribution of a gas during a catalytic reaction can be imaged in situ with high spatial (400 μm) and temporal (15 μs) resolution using infrared planar laser-induced fluorescence. The technique is demonstrated by monitoring, in real-time, the distribution of carbon dioxide during catalytic oxidation of carbon monoxide above powder catalysts. Furthermore, we demonstrate the versatility and potential of the technique in catalysis research by providing a proof-of-principle demonstration of how the activity of several catalysts can be measured simultaneously, either in the same reactor chamber, or in parallel, in different reactor tubes.
机译:可视化和测量紧邻工作催化剂的气体分布对于了解催化活性如何取决于催化剂的结构至关重要。但是,现有方法不能完全确定催化过程中的气体分布。在这里,我们报告了如何使用红外平面激光诱导的荧光以高空间(400μm)和时间(15sμs)分辨率原位成像催化反应期间气体的分布。通过实时监测粉末催化剂上方一氧化碳催化氧化过程中二氧化碳的分布来证明该技术。此外,我们通过提供原理证明来证明如何在同一反应器室中或同时在不同反应器管中同时测量几种催化剂的活性,从而证明了该技术在催化研究中的多功能性和潜力。 。

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