The development of a scanning reactor for planar catalysts (SCR-PC) is here presented. With respect to other existing models, this reactor is able to scan catalysts even with low turnover frequencies, with a minimum sensed circular area of about 6 mm diameter. The downstream gas analysis is performed with a quaprupole mass spectrometer. The apparatus performances are presented for two different reactions: the hydrogenation of butadiene over palladium films and the oxidation of CO over a gold/titania catalyst. With the final setup true scans in both X and Y directions (or even in a previously defined complex direction pattern) are possible within a scan speed ranging from 0.1 mm/min to 5.0 mm/min. Finally, this apparatus aims at becoming a valuable tool for high throughput and combinatorial experimentation to test patterned active surfaces and catalytic libraries.
Evaluation of the two-dimensional performances of low activity planar catalysts: development and validation of a true scanning reactor
Marcello Marelli;Vladimiro Dal Santo;Rinaldo Psaro;
2016
Abstract
The development of a scanning reactor for planar catalysts (SCR-PC) is here presented. With respect to other existing models, this reactor is able to scan catalysts even with low turnover frequencies, with a minimum sensed circular area of about 6 mm diameter. The downstream gas analysis is performed with a quaprupole mass spectrometer. The apparatus performances are presented for two different reactions: the hydrogenation of butadiene over palladium films and the oxidation of CO over a gold/titania catalyst. With the final setup true scans in both X and Y directions (or even in a previously defined complex direction pattern) are possible within a scan speed ranging from 0.1 mm/min to 5.0 mm/min. Finally, this apparatus aims at becoming a valuable tool for high throughput and combinatorial experimentation to test patterned active surfaces and catalytic libraries.| File | Dimensione | Formato | |
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Descrizione: Evaluation of the two-dimensional performances of low activity planar catalysts: development and validation of a true scanning reactor
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