Reaction Analyses Based On Quaternary Metal/Metal Oxide Catalyst Testing In Micro-Structured Reactors Using Combinatorial High-Throughput Methods For Power-To-Gas Applications

CATALYSTS(2021)

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摘要
To optimize the Sabatier process, quaternary supported catalyst materials are synthesized and tested. The syntheses are performed by the industrially established, reproducible and automated methods of impregnation and sol-gel synthesis. The screening of the 588 quaternary catalysts is carried out in a specially designed 10-fold parallel gas flow micro-structured reactor as wall catalysts in sequential operation mode at a temperature of T = 573 K and a pressure of p = 15 bar. For the description of the activity, the reaction parameters CO2 conversion, CH4 yield, and CH4/CO2 selectivity are used. These are determined by analyses of the gas phase composition using mu GC-FID. The catalysts with the highest activities are validated in a micro-structured reactor with similar characteristics as the screening reactor in the temperature range between T = 573-673 K and a pressure of p = 15 bar. Characterization by powder X-ray diffraction, Raman spectra, and scanning transmission electron microscopic images data on the phase and element distribution after calcination and reduction was conducted.
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关键词
gas flow microreactor, high throughput technology, combinatorial chemistry, chemisorption characterization, quaternary wall catalysts, reaction engineering, Sabatier process, PXRD, Raman, STEM
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