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Effect of temperature and catalyst type on the catalytic combustion of formaldehyde

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Ulukardeşler, Ayşe Hilal

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Atalay, Şüheyda
Atalay, Ferhan Sami

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Sage Publications Ltd

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In this study, the catalytic combustion of a volatile organic compound (VOC) namely formaldehyde on manganese oxide catalysts supported on silica or alumina, and on an industrial catalyst, i.e. a mixture of copper oxide and zinc oxide, was studied in the temperature range 125-225 degrees C. Formaldehyde was used as the aqueous solution. It was found that as the temperature was increased, the combustion of the produced and feed formaldehyde was enhanced whereas methanol combustion decreased. Also, the degree of conversion increased with the percentage of MnO in the catalysts.

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Catalyst, Volatile organic compounds, Combustion, Manganese oxide, Formaldehyde, Supported manganese-palladium, Oxide catalysts, Methanol, Mixed oxides, Oxidation, Chemistry, Alumina, Aluminum oxide, Zinc oxide, Catalysis, Volatile organic compounds, Combustion, Silica, Copper oxides, Oxide minerals, Formaldehyde, Manganese oxide, II-VI semiconductors, Catalytic combustion, Degree of conversion, Volatile organic compound (VOC), Effect of temperature, Supported on silica, Industrial catalyst, Methanol combustion, Manganese oxide catalyst, Catalysts

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Ulukardeşler, A. H. vd. (2014). "Effect of temperature and catalyst type on the catalytic combustion of formaldehyde". Progress in Reaction Kinetics and Mechanism, 39(2), 186-196.

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