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通过光谱学和显微镜技术相结合研究焦炭沉积对大尺寸沸石H-ZSM-5晶体在乙醇制烃反应中催化性能的影响

Effects of Coke Deposits on the Catalytic Performance of Large Zeolite H-ZSM-5 Crystals during Alcohol-to-Hydrocarbon Reactions as Investigated by a Combination of Optical Spectroscopy and Microscopy.

作者信息

Nordvang Emily C, Borodina Elena, Ruiz-Martínez Javier, Fehrmann Rasmus, Weckhuysen Bert M

机构信息

Centre for Catalysis and Sustainable Chemistry, DTU Chemistry, B. 207, Technical University of Denmark, 2800 Kgs. Lyngby (Denmark).

Inorganic Chemistry and Catalysis Group, Debye Institute for Nanomaterials Science, Utrecht University, Sorbonnelaan 16, 3584 CA Utrecht (The Netherlands).

出版信息

Chemistry. 2015 Nov 23;21(48):17324-35. doi: 10.1002/chem.201503136. Epub 2015 Oct 14.

Abstract

The catalytic activity of large zeolite H-ZSM-5 crystals in methanol (MTO) and ethanol-to-olefins (ETO) conversions was investigated and, using operando UV/Vis measurements, the catalytic activity and deactivation was correlated with the formation of coke. These findings were related to in situ single crystal UV/Vis and confocal fluorescence micro-spectroscopy, allowing the observation of the spatiotemporal formation of intermediates and coke species during the MTO and ETO conversions. It was observed that rapid deactivation at elevated temperatures was due to the fast formation of aromatics at the periphery of the H-ZSM-5 crystals, which are transformed into more poly-aromatic coke species at the external surface, preventing the diffusion of reactants and products into and out of the H-ZSM-5 crystal. Furthermore, we were able to correlate the operando UV/Vis spectroscopy results observed during catalytic testing with the single crystal in situ results.

摘要

研究了大尺寸沸石H-ZSM-5晶体在甲醇制烯烃(MTO)和乙醇制烯烃(ETO)转化反应中的催化活性,并通过原位紫外/可见光谱测量,将催化活性和失活与焦炭的形成相关联。这些发现与原位单晶紫外/可见光谱和共聚焦荧光显微光谱相关,从而能够观察到MTO和ETO转化过程中中间体和焦炭物种的时空形成。观察到高温下的快速失活是由于H-ZSM-5晶体外围快速形成芳烃,这些芳烃在外表面转化为更多的多环芳烃焦炭物种,从而阻止反应物和产物进出H-ZSM-5晶体。此外,我们能够将催化测试过程中观察到的原位紫外/可见光谱结果与单晶原位结果相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbd0/4676928/0471da91ea6d/chem0021-17324-f1.jpg

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