CO oxidation over alumina monolith impregnated with oxides of copper and manganese

In this work, simple methods for the preparation of highly efficient heterogeneous nanocatalysts for the low-temperature oxidation of CO are described. The main advantages of the reaction are high yields. The catalysts based on oxides of copper and manganese supported on alumina monoliths were prepa...

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Main Authors: Pham Thien Huu, Bui Viet Bang, Phan Thi Que Phuong, Than Ha An Quoc
Format: Article
Language:English
Published: Serbian Chemical Society 2021-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2021/0352-51392100004P.pdf
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spelling doaj-0c5b449d53644f2da2a2e46b2a0f3bd92021-07-19T07:07:31ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212021-01-0186661562410.2298/JSC200509004P0352-51392100004PCO oxidation over alumina monolith impregnated with oxides of copper and manganesePham Thien Huu0Bui Viet Bang1Phan Thi Que Phuong2Than Ha An Quoc3Institute of Applied Materials Science, Vietnam Academy of Science and Technology, Thanh Loc Ward, District, Ho Chi Minh, VietnamInstitute of Applied Materials Science, Vietnam Academy of Science and Technology, Thanh Loc Ward, District, Ho Chi Minh, VietnamInstitute of Applied Materials Science, Vietnam Academy of Science and Technology, Thanh Loc Ward, District, Ho Chi Minh, VietnamInstitute of Applied Materials Science, Vietnam Academy of Science and Technology, Thanh Loc Ward, District, Ho Chi Minh, Vietnam + Graduate University of Science and Technology, Vietnam Academy of Science and Technology, Hoang Quoc Viet, Cau Giay, Ha Noi, VietnamIn this work, simple methods for the preparation of highly efficient heterogeneous nanocatalysts for the low-temperature oxidation of CO are described. The main advantages of the reaction are high yields. The catalysts based on oxides of copper and manganese supported on alumina monoliths were prepared by different methods: plasma corona discharge and wet impregnation. Structure and physical properties of catalysts were characterized by FT- -IR, XRD, TEM, EDX and TG/DTA. The results showed that the use of a plasma corona discharge at atmospheric pressure for the preparation of the catalysts resulted in smaller particle size and uniform dispersion when compared with the catalysts prepared by wet impregnation methods. The catalytic activities of these catalysts were investigated for complete oxidation of carbon monoxide (3000 ppm) to carbon dioxide in the air at atmospheric pressure. On a single oxide catalyst, 10CuO/monolith was better than 10MnO2/monolith under the same experimental conditions. With multi-oxide catalysts, all catalyst samples are more active than a single-oxide catalyst with the same impregnated content. In particular, the catalyst prepared by plasma corona discharge indicates the best oxidation capacity of carbon monoxide.http://www.doiserbia.nb.rs/img/doi/0352-5139/2021/0352-51392100004P.pdfoxidation of carbon monoxidesingle-oxide catalystsmulti- oxide catalystscorona dischargealumina monolithwet-impregnation
collection DOAJ
language English
format Article
sources DOAJ
author Pham Thien Huu
Bui Viet Bang
Phan Thi Que Phuong
Than Ha An Quoc
spellingShingle Pham Thien Huu
Bui Viet Bang
Phan Thi Que Phuong
Than Ha An Quoc
CO oxidation over alumina monolith impregnated with oxides of copper and manganese
Journal of the Serbian Chemical Society
oxidation of carbon monoxide
single-oxide catalysts
multi- oxide catalysts
corona discharge
alumina monolith
wet-impregnation
author_facet Pham Thien Huu
Bui Viet Bang
Phan Thi Que Phuong
Than Ha An Quoc
author_sort Pham Thien Huu
title CO oxidation over alumina monolith impregnated with oxides of copper and manganese
title_short CO oxidation over alumina monolith impregnated with oxides of copper and manganese
title_full CO oxidation over alumina monolith impregnated with oxides of copper and manganese
title_fullStr CO oxidation over alumina monolith impregnated with oxides of copper and manganese
title_full_unstemmed CO oxidation over alumina monolith impregnated with oxides of copper and manganese
title_sort co oxidation over alumina monolith impregnated with oxides of copper and manganese
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
1820-7421
publishDate 2021-01-01
description In this work, simple methods for the preparation of highly efficient heterogeneous nanocatalysts for the low-temperature oxidation of CO are described. The main advantages of the reaction are high yields. The catalysts based on oxides of copper and manganese supported on alumina monoliths were prepared by different methods: plasma corona discharge and wet impregnation. Structure and physical properties of catalysts were characterized by FT- -IR, XRD, TEM, EDX and TG/DTA. The results showed that the use of a plasma corona discharge at atmospheric pressure for the preparation of the catalysts resulted in smaller particle size and uniform dispersion when compared with the catalysts prepared by wet impregnation methods. The catalytic activities of these catalysts were investigated for complete oxidation of carbon monoxide (3000 ppm) to carbon dioxide in the air at atmospheric pressure. On a single oxide catalyst, 10CuO/monolith was better than 10MnO2/monolith under the same experimental conditions. With multi-oxide catalysts, all catalyst samples are more active than a single-oxide catalyst with the same impregnated content. In particular, the catalyst prepared by plasma corona discharge indicates the best oxidation capacity of carbon monoxide.
topic oxidation of carbon monoxide
single-oxide catalysts
multi- oxide catalysts
corona discharge
alumina monolith
wet-impregnation
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2021/0352-51392100004P.pdf
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