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Optimized Doped Titania for Photocatalysis Applications
Krejčíková, Simona ; Kočí, K. ; Obalová, L. ; Čapek, L. ; Šolcová, Olga
This study is focused on preparation and characterization of the specially designed TIO2 and its modified versions (doped by metal) suitable for photodegradations of organic pollutants.
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Užití kalcinovaných LDH jako katalyzátorů pro odstranění emisí N2O
Obalová, L. ; Kovanda, F. ; Jirátová, Květa ; Pacultová, K. ; Lacný, Z.
Mixed oxide catalysts were prepared by calcination of LDH containing as divalent ions Ni, Co, Cu and /or Mg and as trivalent ions Mn, Fe and/or Al. The highest conversion was reached over Ni-Al and Co-Mn-Al mixed oxides. N2O conversion decreased slightly with the presence of NO2 over Co-Mn-Al catalyst, but strongly over Ni-Al catalyst. Water vapor inhibited the N2O decomposition over all tested catalysts.
Vliv velikosti krystalitů TiO2 na jeho fotokatalytickou reaktivitu
Kočí, K. ; Obalová, L. ; Matějová, Lenka ; Šolcová, Olga ; Plachá, D. ; Lacný, Z.
The aim of this work is to assess the effect of particle size on photocatalytic reactivity of TiO2 exemplified by the photoreduction of CO2 by water. As the particle size decreased higher methane yields over the TiO2 nanoparticles under the illumination of the light were obtained. Results were compared with yields of mathane over Degussa P25, which in non-porous. We demonstrated that photoreactivity of Degussa P25 was lower than all tested TiO2 nanoparticles.
Vliv alkalických kovů v kalcinovaném Co-Mn-Al LDH na katalytický rozklad N2O.
Obalová, L. ; Jirátová, Květa ; Kovanda, F. ; Galejová, K. ; Pacultová, K.
The effect of various amounts of potassium in Co-Mn-Al spinel catalyst on N2O decompositon was examined. Different catalytic performance of samples with different amount of K in th epresence of H2O and NOx could be related to changes in acidity and basicity of catalyst surface.
N2O Decomposition over Promoted Mixed Oxide Catalysts.
Galejová, K. ; Obalová, L. ; Pacultová, K. ; Lacný, Z. ; Kovanda, F. ; Jirátová, Květa
Mixed oxide Co-Mn-Al catalysts were promotes by metals Pd, Pt, La, K and Ce. In simulated proces conditions (in the presence of O2, NO, NO2, H2O) catalytic activity, as well as thein regeneration was studied. The most active catalyst is that one with 3 wt. % K.
Catalytic Reduction of N2O Emissions.
Obalová, L. ; Kovanda, F. ; Jirátová, Květa ; Pacultová, K.
Effect of mixed oxides prepared by decomposition of hydrotalcite precursors was studied in decomposition of N2O. In simulated proces conditions (presence of O2, NO, NO2, H2O) their activity and long-term stability was examined. The most active catalyst was that with 3 wt. % K.
Catalytic Methods in Decrease of N2O Emissions: II. Catalysts Based on Hydrotalcites – Results of Investigation.
Pacultová, K. ; Obalová, L. ; Kovanda, F. ; Jirátová, Květa ; Lacný, Z. ; Valášková, M.
Activity of the two- and three component catalysts prepared by calcinations of Ni, Cu, Co, Mn, Mg, Al hydrotalcites in various molar ratios, partly modified with Pt, Pd, La, or K, was studied. Influence of O2, NOx, or H2O present in the reaction mixture on activity and stability of the most active catalyst was also investigated. Based on the laboratory results the size of a hypothetical industrial reactor was calculated.
Účinnost destrukce N2O v přítomnosti CO na směsných oxidických Co-Mn-Al katalyzátorech odvozených z Co-Mn-Al hydrotalcitů.
Pacultová, K. ; Obalová, L. ; Jirátová, Květa ; Kovanda, F.
Presence of CO showed a positive effect on the N2O destruction over mixed metal oxide catalyst derived from Co-Mn-Al hydrotalcite precursors, as it can remove the adsorbed oxygen on the catalyst surface. Vice versa presence of oxygen in the reaction mixture has negative effect.
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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