Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide

65 Türkçe Barbaros AKKURT Journal of the Turkish Chemical Society Section A: Chemistry Araştırma Makalesi EN Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide Yıl 2023...

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Main Authors: Sima ZULFUGAROVA, Gunel R AZİMOVA, S Z ALESKEROVA, Dilgam TAGİYEV
Format: Article
Language:English
Published: Turkish Chemical Society 2023-08-01
Series:Journal of the Turkish Chemical Society, Section A: Chemistry
Subjects:
Online Access:https://dergipark.org.tr/tr/pub/jotcsa/issue/78393/1261839
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author Sima ZULFUGAROVA
Gunel R AZİMOVA
S Z ALESKEROVA
Dilgam TAGİYEV
author_facet Sima ZULFUGAROVA
Gunel R AZİMOVA
S Z ALESKEROVA
Dilgam TAGİYEV
author_sort Sima ZULFUGAROVA
collection DOAJ
description 65 Türkçe Barbaros AKKURT Journal of the Turkish Chemical Society Section A: Chemistry Araştırma Makalesi EN Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide Yıl 2023, Cilt: 10 Sayı: 3, 577 - 588, 30.08.2023 Sima ZULFUGAROVA Gunel R AZİMOVA S Z ALESKEROVA Dilgam TAGİYEV https://doi.org/10.18596/jotcsa.1261839 Öz The reaction of low-temperature oxidation of carbon monoxide is important in the context of air purification and reduction of automotive emissions. Along with the search for active catalytic systems for carbon monoxide oxidation, the development of new energy-saving methods of catalyst synthesis also seems important. Cobalt-iron, cobalt-manganese, cobalt-chromium, cobalt-copper binary and cobalt-manganese-iron, cobalt-copper-iron-containing triple oxide systems for low-temperature oxidation of carbon monoxide into carbon dioxide were synthesized by the sol-gel method with auto-combustion. The samples were analyzed by X-ray diffraction, IR spectral and derivatographic methods of analysis, their specific surface area was measured by the BET method, micro-photographs were taken on a scanning electron microscope. It was established that the resulting binary and ternary cobalt-containing oxide systems are multiphase systems containing ferrites, manganites, and oxides of cobalt, copper, manganese, and iron. The resulting catalysts are active in the low-temperature oxidation of carbon monoxide at 145-180 °C. The activation energy of the CO oxidation reaction on the analyzed oxide systems was revealed by the Arrhenius equation is placed in the range of 17-33 kJ/mol. In the systems, an intensifying effect of the influence of its components on the catalytic activity is observed in the oxide and spinel phases. The Co-Cr=2:1 system, which, along with chromite, also contains cobalt oxide, which is active at a much lower temperature – 145 °C than systems with a Co-Cr=1:1 and 1:2 ratios. A similar dependence was obtained in the Co-Fe=2:1 system, i.e. in a sample that, along with cobalt ferrite, also contains cobalt oxide. On this catalyst, 100% conversion of CO to CO2 occurs at a temperature of 200 °C, and a Co-Fe = 1:2 sample with a stoichiometric ratio of metals, in which the ferritization reaction completely occurs, as experiments have shown, is active only at temperatures above 300 °C. The intensifying effect of the influence of the components on its activity is also observed in three-component systems, in which the complete conversion of CO occurs at a temperature of 145-160 °C. The appearance of various structural defects during short-term combustion of the gel without additional heat treatment, which can potentially be considered as catalytically active centers, on the one hand, and the presence of oxide and spinel phases in the composition of catalysts, which exhibit a mutual reinforcing effect, on the other hand, is demonstrative advantage of this method for the synthesis of active catalysts for low-temperature oxidation of carbon monoxide to dioxide.
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spelling doaj.art-acbb8646a0654eac9e2e71a2044887492023-09-10T06:47:39ZengTurkish Chemical SocietyJournal of the Turkish Chemical Society, Section A: Chemistry2149-01202023-08-01103577588https://doi.org/10.18596/jotcsa.1261839 Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide Sima ZULFUGAROVA0https://orcid.org/0000-0001-9593-0099Gunel R AZİMOVA1https://orcid.org/0000-0000-0000-0000S Z ALESKEROVA2https://orcid.org/0000-0000-0000-0000Dilgam TAGİYEV3https://orcid.org/0000-0002-8312-2980 Institute of Catalysis and Inorganic Chemistry named after Acad.M.Nagiyev Institute of Catalysis and Inorganic Chemistry of the Ministry of Science and Education of Azerbaijan Institute of Catalysis and Inorganic Chemistry of the Ministry of Science and Education of Azerbaijan Institute of Catalysis and Inorganic Chemistry of the Ministry of Science and Education of Azerbaijan 65 Türkçe Barbaros AKKURT Journal of the Turkish Chemical Society Section A: Chemistry Araştırma Makalesi EN Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide Yıl 2023, Cilt: 10 Sayı: 3, 577 - 588, 30.08.2023 Sima ZULFUGAROVA Gunel R AZİMOVA S Z ALESKEROVA Dilgam TAGİYEV https://doi.org/10.18596/jotcsa.1261839 Öz The reaction of low-temperature oxidation of carbon monoxide is important in the context of air purification and reduction of automotive emissions. Along with the search for active catalytic systems for carbon monoxide oxidation, the development of new energy-saving methods of catalyst synthesis also seems important. Cobalt-iron, cobalt-manganese, cobalt-chromium, cobalt-copper binary and cobalt-manganese-iron, cobalt-copper-iron-containing triple oxide systems for low-temperature oxidation of carbon monoxide into carbon dioxide were synthesized by the sol-gel method with auto-combustion. The samples were analyzed by X-ray diffraction, IR spectral and derivatographic methods of analysis, their specific surface area was measured by the BET method, micro-photographs were taken on a scanning electron microscope. It was established that the resulting binary and ternary cobalt-containing oxide systems are multiphase systems containing ferrites, manganites, and oxides of cobalt, copper, manganese, and iron. The resulting catalysts are active in the low-temperature oxidation of carbon monoxide at 145-180 °C. The activation energy of the CO oxidation reaction on the analyzed oxide systems was revealed by the Arrhenius equation is placed in the range of 17-33 kJ/mol. In the systems, an intensifying effect of the influence of its components on the catalytic activity is observed in the oxide and spinel phases. The Co-Cr=2:1 system, which, along with chromite, also contains cobalt oxide, which is active at a much lower temperature – 145 °C than systems with a Co-Cr=1:1 and 1:2 ratios. A similar dependence was obtained in the Co-Fe=2:1 system, i.e. in a sample that, along with cobalt ferrite, also contains cobalt oxide. On this catalyst, 100% conversion of CO to CO2 occurs at a temperature of 200 °C, and a Co-Fe = 1:2 sample with a stoichiometric ratio of metals, in which the ferritization reaction completely occurs, as experiments have shown, is active only at temperatures above 300 °C. The intensifying effect of the influence of the components on its activity is also observed in three-component systems, in which the complete conversion of CO occurs at a temperature of 145-160 °C. The appearance of various structural defects during short-term combustion of the gel without additional heat treatment, which can potentially be considered as catalytically active centers, on the one hand, and the presence of oxide and spinel phases in the composition of catalysts, which exhibit a mutual reinforcing effect, on the other hand, is demonstrative advantage of this method for the synthesis of active catalysts for low-temperature oxidation of carbon monoxide to dioxide.https://dergipark.org.tr/tr/pub/jotcsa/issue/78393/1261839sol-gel methodcarbon monoxide oxidationcobalt-containing oxide catalysts
spellingShingle Sima ZULFUGAROVA
Gunel R AZİMOVA
S Z ALESKEROVA
Dilgam TAGİYEV
Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide
Journal of the Turkish Chemical Society, Section A: Chemistry
sol-gel method
carbon monoxide oxidation
cobalt-containing oxide catalysts
title Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide
title_full Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide
title_fullStr Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide
title_full_unstemmed Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide
title_short Cobalt-Containing Oxide Catalysts Obtained by The Sol-Gel Method with Auto-Combustion in The Reaction of Low-Temperature Oxidation of Carbon Monoxide
title_sort cobalt containing oxide catalysts obtained by the sol gel method with auto combustion in the reaction of low temperature oxidation of carbon monoxide
topic sol-gel method
carbon monoxide oxidation
cobalt-containing oxide catalysts
url https://dergipark.org.tr/tr/pub/jotcsa/issue/78393/1261839
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AT gunelrazimova cobaltcontainingoxidecatalystsobtainedbythesolgelmethodwithautocombustioninthereactionoflowtemperatureoxidationofcarbonmonoxide
AT szaleskerova cobaltcontainingoxidecatalystsobtainedbythesolgelmethodwithautocombustioninthereactionoflowtemperatureoxidationofcarbonmonoxide
AT dilgamtagiyev cobaltcontainingoxidecatalystsobtainedbythesolgelmethodwithautocombustioninthereactionoflowtemperatureoxidationofcarbonmonoxide