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Graduate student Jin Suntivich, lead author of the Nature Chemistry paper, holds up an electrochemical cell used for catalyst testing.
The paper presents the coupled results on reactor structure modelling and the catalyst testing.
A differential packed-bed reactor microfabricated in silicon is presented for heterogeneous gas phase catalyst testing.
In this paper a discussion is given concerning reactor selection for FCC catalyst testing.
A fluorescence imaging detection system was designed for high throughput analysis, 1,6-hexamethylenediamine was used as the probe molecule for catalyst testing.
Reaction experiments have been extended to acetylene hydrogenation, a more complicated chemistry, demonstrating the cross-flow microreactor as a robust laboratory tool for quantitative heterogeneous gas phase catalyst testing.
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The catalyst tests employed a fixed bed reactor system, connected with gas chromatography system (online GC, off line GC/MS).
The catalyst tested in this study, containing 80%Co/20%Ce/15wt.%SiO2 which was performed optimally for the conversion of synthesis gas to light olefins[33], was prepared using co-precipitation procedure.
Of the catalysts tested, Amberlyst 15 was the most active catalyst in screening experiments.
For the three catalysts tested, catalyst CuO-ZnO-Al2O3 provides the best performance at temperatures lower than 320 °C.
Among catalysts tested, the catalyst BaTi0.8Ni0.2O3 exhibited the best activity and excellent stability.
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