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SpaciMS:催化整体式催化剂内反应的空间和时间操作分辨率。

SpaciMS: spatial and temporal operando resolution of reactions within catalytic monoliths.

机构信息

School of Chemistry and Chemical Engineering, Queen's University Belfast, David Keir Building. Stranmillis Road, Belfast, BT9 5AG, Northern Ireland, UK.

出版信息

Analyst. 2010 Sep;135(9):2260-72. doi: 10.1039/c0an00303d. Epub 2010 Aug 9.

Abstract

Monolithic catalysts are widely used as structured catalysts, especially in the abatement of pollutants. Probing what happens inside these monoliths during operation is, therefore, vital for modelling and prediction of the catalyst behavior. SpaciMS is a spatially resolved capillary-inlet mass spectroscopy system allowing for the generation of spatially resolved maps of the reactions within monoliths. In this study SpaciMS results combined with 3D CFD modelling demonstrate that SpaciMS is a highly sensitive and minimally invasive technique that can provide reaction maps as well as catalytic temporal behavior. Herein we illustrate this by examining kinetic oscillations during a CO oxidation reaction over a Pt/Rh on alumina catalyst supported on a cordierite monolith. These oscillations were only observed within the monolith by SpaciMS between 30 and 90% CO conversion. Equivalent experiments performed in a plug-flow reactor using this catalyst in a crushed form over a similar range of reaction conditions did not display any oscillations demonstrating the importance of intra monolith analysis. This work demonstrates that the SpaciMS offers an accurate and comprehensive picture of structured catalysts under operation.

摘要

整体式催化剂被广泛用作结构化催化剂,特别是在污染物减排方面。因此,探测这些整体式催化剂在运行过程中内部发生的情况对于模型建立和预测催化剂的行为至关重要。SpaciMS 是一种空间分辨毛细管进样质谱系统,可生成整体式内部反应的空间分辨图谱。在这项研究中,SpaciMS 结果与 3D CFD 建模相结合,证明了 SpaciMS 是一种高度敏感且微创的技术,可提供反应图谱以及催化时间行为。在这里,我们通过检查在氧化铝负载的 Pt/Rh 催化剂上进行 CO 氧化反应过程中的动力学振荡来说明这一点。这些振荡仅在 30%至 90% CO 转化率之间通过 SpaciMS 在整体式内部观察到。在类似的反应条件下,使用这种催化剂以粉碎形式在活塞流反应器中进行的等效实验没有显示出任何振荡,证明了整体式内部分析的重要性。这项工作表明,SpaciMS 提供了运行中结构化催化剂的准确和全面的图像。

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