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Mechanism of Reduction of Nitrogen Oxides with Propene
Design of Unique Titanium Oxide Photocatalysts by an Advanced
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1-butene acetate acid catalysts adsorbed adsorption alkali alkali-ion-modified alkyl nitrite alumina ammonia amount anatase Appl Catal aqueous atoms azine band benzene bond calcination carbon carbonylation Catal Lett catalyst catalytic activity catalytic reaction Chem chemical Chemistry complex concentration conversion copper crystallites crystals cyclohexanone deactivation decreased deposition effect evacuation EXAFS formation formed framework Gabelica heating hydrazine hydrocarbons hydrogen increase intermediate Inui ions isobutane isomerization Lewis acid metal methane methanol methyl methylamine mixture molecular molecules n-hexane nitrobenzene nitrogen observed olefins oxidation oxygen particles peak Phys pore prepared presence pressure propane propylene pyridine ratio Rb-VS reactants reaction conditions reaction rate reactor reduction room temperature sample selectivity showed shown in Figure silica silicalite SiO2 solid acid solution spectra spectrum structure supported Surf surface area synthesis Table TiO2 V=O species vanadium yield zeolite