29 results on '"Jirátová, Květuše"'
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2. Combination of Plasma Jet and Magnetron SputteringA New Method for Preparing Thin Ni–Co–Mn Oxide Coatings on Stainless Steel Meshes and Their Efficiency in the Total Oxidation of Volatile Organic Compounds.
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3. Structured cobalt oxide catalysts for VOC abatement: the effect of preparation method
4. Catalytic activity of cobalt grafted on ordered mesoporous silica materials in N2O decomposition and CO oxidation
5. Hydrodesulfurization NiMo catalysts over gamma-alumina prepared mechanochemically
6. Advantages of stainless steel sieves as support for catalytic N2O decomposition over K-doped Co3O4
7. Effect of precursor synthesis on catalytic activity of Co3O4 in N2O decomposition
8. Nanocrystalline Sulfided NiMoW Catalyst Supported on Mesoporous Aluminas for the Hydrodesulfurization of 4,6-Dimethyldibenzothiophene
9. Cobalt-Copper Oxide Catalysts for VOC Abatement: Effect of Co:Cu Ratio on Performance in Ethanol Oxidation
10. Surface Potassium Promotion of Co4MnAlOx in Direct NO Decomposition Generates the Same Type of Active Sites as Bulk Promotion.
11. Total oxidation of model volatile organic compounds over some commercial catalysts
12. NiMo/γ-Al2O3 Catalysts from Ni Heteropolyoxomolybdate and Effect of Alumina Modification by B, Co, or Ni
13. Simulation of N 2O Abatement in Waste Gases by Its Decomposition over a K-Promoted Co-Mn-Al Mixed Oxide Catalyst
14. Preparation of Al–SBA-15 pellets with low amount of additives: Effect of binder content on texture and mechanical properties. Application to Friedel–Crafts alkylation
15. Solid waste decontamination by thermal desorption and catalytic oxidation methods
16. Surface Potassium Promotion of Co4MnAlOxin Direct NO Decomposition Generates the Same Type of Active Sites as Bulk Promotion
17. N2O catalytic decomposition — effect of pelleting pressure on activity of Co-Mn-Al mixed oxide catalysts
18. Hydrothermal deposition as a novel method for the preparation of Co–Mn mixed oxide catalysts supported on stainless steel meshes: application to VOC oxidation
19. Magnesium Effect in K/Co-Mg-Mn-Al Mixed Oxide Catalyst for Direct NO Decomposition
20. K-Modified Co–Mn–Al Mixed Oxide—Effect of Calcination Temperature on N2O Conversion in the Presence of H2O and NOx
21. Structured cobalt oxide catalysts for VOC abatement: the effect of preparation method
22. Simulation of N2O Abatement in Waste Gases by Its Decomposition over a K-Promoted Co-Mn-Al Mixed Oxide Catalyst
23. Hydrodesulfurization of Different Feeds on CoMo/Al2O3 Catalyst Prepared Using Cobalt Heteropolyoxomolybdate
24. Modification of Co-Mn-Al Mixed Oxide with Promoters and Their Effect on Properties and Activity in VOC Total Oxidation
25. Application of Calcined Layered Double Hydroxides as Catalysts for Abatement of N2O Emissions
26. N2O catalytic decomposition — effect of pelleting pressure on activity of Co-Mn-Al mixed oxide catalysts.
27. Effect of precipitation and aging on porous structure of aluminium hydroxide. II. Changes in pore size distributions
28. Effect of precipitation and aging on porous structure of aluminium hydroxide. I. Statistical treatment of experimental data
29. K-Modified Co–Mn–Al Mixed Oxide—Effect of Calcination Temperature on N 2 O Conversion in the Presence of H 2 O and NO x.
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