Title of article :
Remediation of various naturally oxygenated volatile organic compounds (O-VOCS) by Mn- and Cr-supported γ-Al_2O_3 nanocatalysts
Author/Authors :
Salari, Dariush university of tabriz - Faculty of Chemistry - Department of Applied Chemistry and Chemical Engineering, تبريز, ايران , Niaei, Aligholi university of tabriz - Faculty of Chemistry - Department of Applied Chemistry and Chemical Engineering, تبريز, ايران , HOSSEINI, Ali university of tabriz - Faculty of Chemistry - Department of Applied Chemistry and Chemical Engineering, تبريز, ايران , ALESHZADEH, Reza university of tabriz - Faculty of Chemistry - Department of Applied Chemistry and Chemical Engineering, تبريز, ايران , AFSHARY, Hosein university of tabriz - Faculty of Chemistry - Department of Applied Chemistry and Chemical Engineering, تبريز, ايران
Abstract :
The catalytic combustions of different naturally oxygenated volatile organic compounds (ethyl acetate, isopropanol, methyl ethyl ketone (MEK), and benzyl alcohol) alone and in binary mixtures were investigated over pure γ -Al_2O_3, Mn/γ -Al_2O_3, andCr/γ -Al_2O_3 . The catalysts were prepared by the wet impregnation method and were characterized using XRD, ICP-AES, SEM, and BET. Mn/γ -Al_2O_3 showed higher activity than others in combustion of the O-VOCs, whereas complete conversion of isopropanol (the most reactive O -VOC) occurred at 350 ◦C and 400 ◦C on Mn/γ -Al_2O_3 and Cr/γ -Al_2O_3 , respectively. The following order was found for reactivity of organic compounds in single form: isopropanol benzyl alcohol ethyl acetate MEK. There was no relation between activity of the catalyst and BET surface area. An inhibition/promotion effect was found in the oxidation of O-VOC binary mixtures because of the competitive adsorption on the catalyst, leading to an oxidation behavior for O-VOC binary mixtures different than that of single components. The presence of water vapor as a co-feed had an inhibition effect on isopropanol oxidation and was temperature-dependent such that it decreased above 350 ◦C.
Keywords :
Oxygenated organic compounds , catalytic oxidation , Mn , γ , Al_2O_3 , Cr , γ , Al_2O_3 , nanocatalyst
Journal title :
Turkish Journal of Chemistry
Journal title :
Turkish Journal of Chemistry