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Design of nanomaterials based on complex Al-Zr-Ce-oxides for bio ethanol transformations

Effect of composition and calcination temperature of ceria-zirconia-alumina mixed oxides on catalytic performances of ethanol conversion

DETERMINATION OF THE ACTIVE FORM OF COPPER FOR THE ETHANOL DEHYDROGENATION REACTION BY EXAFS-SPECTROSCOPY

Selectivity of Ethanol Conversion on Al/Zr/Ce Mixed Oxides: Dehydration and Dehydrogenation Pathways Based on Surface Acidity Properties

Frame Catalysts of Al2O3–ZrO2–CeO2 System 200 and 90 m2/g, respectively. After calcinations at 950°C, the powders retain nanoscale

Enhanced ethanol dehydrogenation over Ni-containing zirconia-alumina catalysts with microwave-assisted synthesis to acetaldehyde was ≈ 70% at 400 °C on Ni–65AZ–MW sample. © The Author(s), under exclusive licence to Springer

Novel Complex Titanium NASICON-Type Phosphates as Acidic Catalysts for Ethanol Dehydration

Determination of the effect of plasma-chemical treatment on the structure of the active phase of ethanol dehydrogenation catalystS Cu/(Ce+Zr)O2-Al2O3 of ethanol dehydrogenation catalystS Cu/(Ce+Zr)O2-Al2O3

Titanosilicalites (MFI-type): Composition, statistical and local structure, catalytic properties-1G) with general formula [(TixSi12-x)O24] × wH2O (MFI-type) using the X-ray study (XRPD), IR

COPPER CATALYSTS WITH COMPLEX OXIDES OF ALUMINIUM AND ZIRCONIUM Cu – (Zr + Ce)O2 – Al2O3 AS CARRIER IN THE PROCESS OF ETHANOL CONVERSION: EFFECT OF CATALYST COMPOSITION AND ETHANOL CONCENTRATION Moscow State University as part of the University’s Development Plan. The authors thank senior researcher

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