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Synthesis and characterization of Cu-MFI catalyst for the direct medium temperature range NO decomposition (CROSBI ID 232349)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Maduna Valkaj, Karolina ; Tomašić, Vesna ; Katović, Andrea ; Bielanska, Elzbieta Synthesis and characterization of Cu-MFI catalyst for the direct medium temperature range NO decomposition // Materials Science Poland, 34 (2016), 1; 177-184. doi: 10.1515/msp-2016-0018

Podaci o odgovornosti

Maduna Valkaj, Karolina ; Tomašić, Vesna ; Katović, Andrea ; Bielanska, Elzbieta

engleski

Synthesis and characterization of Cu-MFI catalyst for the direct medium temperature range NO decomposition

In this study the physico-chemical and catalytic properties of copper bearing MFI zeolites (Cu- MFI) with different Si/Al and Si/Cu ratios were investigated. Two different methods for incorporation of metal ions into the zeolite framework were used: the ion exchange from the solution of copper acetate and the direct hydrothermal synthesis. Direct synthesis of a zeolite in the presence of copper-phosphate complexes was expected to generate more active copper species necessary for the desired reaction than the conventional ion exchange method. Direct decomposition of NO was used as a model reaction, because this reaction still offers a very attractive approach to NOX removal. The catalytic properties of zeolite samples were studied using techniques, such as XRD, SEM, EPR and nitrogen adsorption/desorption measurements at 77 K. Results of the kinetic investigation revealed that both methods are applicable for the preparation of the catalysts with active sites capable of catalyzing the NO decomposition. It was found out that Cu-MFI zeolites obtained through direct synthesis are promising catalysts for NO decomposition, especially at lower reaction temperatures. The efficiency of the catalysts prepared by both methods is compared and discussed.

Cu-MFI zeolite ; catalytic properties ; direct hydrothermal synthesis ; NO decomposition ; medium reaction temperature range ; redox properties

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Podaci o izdanju

34 (1)

2016.

177-184

objavljeno

2083-1331

2083-134X

10.1515/msp-2016-0018

Povezanost rada

Interdisciplinarne tehničke znanosti, Kemijsko inženjerstvo

Poveznice
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