National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Kalcinované Co(Mg)Al(Mn) prekursory připravené na bázi hydrotalcitů v totální oxidaci VOC
Mikulová, Zuzana ; Balabánová, Jana ; Kovanda, F. ; Bastl, Zdeněk ; Jirátová, Květa
Total oxidation of VOC proceeding in the presence of oxidation catalysts at relatively low reaction temperature (determined by catalysts activity) is an alternative route to eliminace VOC from air. Hydrotalcites could be promising materiál for oxidation catalysts as they lead, after calcination, to mixed oxides.The aim of our study was to reveal the effect of various Mg:Co:Al:Mn hydrotalcite-like compound molar ratio (MII/MIII being 2) on physical-chemical properties of resulting catalysts and thein aktivity in total oxidation of VOC.
Investigation of the VOC Oxidation Catalysts Based on Hydrotalcite-Like Compounds
Kovanda, F. ; Jirátová, Květa ; Koloušek, D. ; Doušová, B. ; Dorničák, V. ; Čuba, Pavel
Optimum regime of VOC combustion was found for the calcined hydrotalcite-like compounds (Ni, Cu, Mn, Mg, Al and their combinations).
Catalytic Decomposition of Nitrous Oxide over Calcined Hydrotalcite-like Compounds
Obalová, L. ; Kovanda, F. ; Jirátová, Květa ; Chmielová, M. ; Wichterle, K. ; Dorničák, V.
Mixed oxide based catalysts prepared by the thermal decomposition of Hydrotalcite-like compounds were used in catalytic decomposition of nitrous oxide into nitrogen and oxygen. The catalytic reaction was performed in a fixed-bed reactor at 1000 ppm N2O inlet concentration in the temperature range 603 - 723 K. Ni and Co-containing catalysts showed high activity in nitrous oxide decomposition. A very poor activity was observed for Mg-Al mixed oxide catalyst. The prepared catalysts were characterized by the thermal analysis, powder X-ray diffraction, infrared spectroscopy, BET surface area measurement, temperature-programmed reduction and temperature-programmed desorption. The determined reaction rate constants of N2O decomposition were approximately proportional to the amount of reducible components and inversely proportional to the amount of strong basic centres of catalyst.

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