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Evolution and Enabling Capabilities of Spatially Resolved Techniques for the Characterization of Heterogeneously Catalyzed Reactions

机译:空间分辨技术的演化和能力表征异相催化反应

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摘要

The development and optimization of catalysts and catalytic processes requires knowledge of reaction kinetics and mechanisms. In traditional catalyst kinetic characterization, the gas composition is known at the inlet, and the exit flow is measured to determine changes in concentration. As such, the progression of the chemistry within the catalyst is not known. Technological advances in electromagnetic and physical probes have made visualizing the evolution of the chemistry within catalyst samples a reality, as part of a methodology commonly known as spatial resolution. Herein, we discuss and evaluate the development of spatially resolved techniques, including the evolutions and achievements of this growing area of catalytic research. The impact of such techniques is discussed in terms of the invasiveness of physical probes on catalytic systems, as well as how experimentally obtained spatial profiles can be used in conjunction with kinetic modelling. Furthermore, some aims and aspirations for further evolution of spatially resolved techniques are considered.
机译:催化剂和催化过程的开发和优化需要了解反应动力学和机理。在传统的催化剂动力学表征中,进气处的气体成分是已知的,然后测量出口流量以确定浓度的变化。因此,催化剂内化学反应的进行是未知的。电磁探针和物理探针的技术进步已使可视化催化剂样品中化学物质的演变成为现实,这是通常称为空间分辨率的方法学的一部分。在这里,我们讨论和评估空间分辨技术的发展,包括催化研究这一增长领域的发展和成就。根据物理探针对催化系统的侵袭性以及如何将实验获得的空间轮廓与动力学建模结合使用,讨论了此类技术的影响。此外,还考虑了进一步发展空间分辨技术的一些目标和愿望。

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