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Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism

In order to broaden the temperature range of NO oxidation reaction in flue gas and maintain high oxidation efficiency, various loading amounts of MnO(x)–CoO(x)/TiO(2) mesoporous catalysts were tested in the catalytic oxidation of NO. It was found that 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) demonstrated the...

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Autores principales: Si, Meng, Shen, Boxiong, Liu, Lijun, Zhang, Haohao, Zhou, Wenjun, Wang, Jianqiao, Zhang, Xiao, Zhang, Zhikun, Wu, Chunfei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055137/
https://www.ncbi.nlm.nih.gov/pubmed/35516208
http://dx.doi.org/10.1039/d0ra04129g
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author Si, Meng
Shen, Boxiong
Liu, Lijun
Zhang, Haohao
Zhou, Wenjun
Wang, Jianqiao
Zhang, Xiao
Zhang, Zhikun
Wu, Chunfei
author_facet Si, Meng
Shen, Boxiong
Liu, Lijun
Zhang, Haohao
Zhou, Wenjun
Wang, Jianqiao
Zhang, Xiao
Zhang, Zhikun
Wu, Chunfei
author_sort Si, Meng
collection PubMed
description In order to broaden the temperature range of NO oxidation reaction in flue gas and maintain high oxidation efficiency, various loading amounts of MnO(x)–CoO(x)/TiO(2) mesoporous catalysts were tested in the catalytic oxidation of NO. It was found that 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) demonstrated the best adsorption performance to oxygen species and contained more oxygen vacancies, as well as the best surface oxygen mobility, thus exhibiting excellent NO catalytic oxidation activity. O(3) (O(3)/NO < 1) combined with 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) improved the oxidation efficiency of NO at 50–400 °C, especially below 250 °C. When the temperatures were less than 250 °C, the oxidation efficiencies of NO by O(3) over 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) were 5–13% higher than the calculated theoretical efficiencies. This indicated that there was a synergistic effect between O(3) and 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) below 250 °C. Based on the results of in situ DRIFTS studies, it was deduced that monodentate nitrates were the main intermediates that produced a synergistic effect due to the introduction of O(3). In addition, O(3) accelerated the transformation between nitrate species, decreased the decomposition temperature of nitrate species, and inhibited the accumulation of nitrate ions, thus improving the oxidation efficiency of NO.
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spelling pubmed-90551372022-05-04 Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism Si, Meng Shen, Boxiong Liu, Lijun Zhang, Haohao Zhou, Wenjun Wang, Jianqiao Zhang, Xiao Zhang, Zhikun Wu, Chunfei RSC Adv Chemistry In order to broaden the temperature range of NO oxidation reaction in flue gas and maintain high oxidation efficiency, various loading amounts of MnO(x)–CoO(x)/TiO(2) mesoporous catalysts were tested in the catalytic oxidation of NO. It was found that 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) demonstrated the best adsorption performance to oxygen species and contained more oxygen vacancies, as well as the best surface oxygen mobility, thus exhibiting excellent NO catalytic oxidation activity. O(3) (O(3)/NO < 1) combined with 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) improved the oxidation efficiency of NO at 50–400 °C, especially below 250 °C. When the temperatures were less than 250 °C, the oxidation efficiencies of NO by O(3) over 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) were 5–13% higher than the calculated theoretical efficiencies. This indicated that there was a synergistic effect between O(3) and 15%MnO(x)–CoO(x)(2 : 1)/TiO(2) below 250 °C. Based on the results of in situ DRIFTS studies, it was deduced that monodentate nitrates were the main intermediates that produced a synergistic effect due to the introduction of O(3). In addition, O(3) accelerated the transformation between nitrate species, decreased the decomposition temperature of nitrate species, and inhibited the accumulation of nitrate ions, thus improving the oxidation efficiency of NO. The Royal Society of Chemistry 2020-07-02 /pmc/articles/PMC9055137/ /pubmed/35516208 http://dx.doi.org/10.1039/d0ra04129g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Si, Meng
Shen, Boxiong
Liu, Lijun
Zhang, Haohao
Zhou, Wenjun
Wang, Jianqiao
Zhang, Xiao
Zhang, Zhikun
Wu, Chunfei
Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism
title Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism
title_full Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism
title_fullStr Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism
title_full_unstemmed Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism
title_short Catalytic oxidation of NO over MnO(x)–CoO(x)/TiO(2) in the presence of a low ratio of O(3)/NO: activity and mechanism
title_sort catalytic oxidation of no over mno(x)–coo(x)/tio(2) in the presence of a low ratio of o(3)/no: activity and mechanism
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055137/
https://www.ncbi.nlm.nih.gov/pubmed/35516208
http://dx.doi.org/10.1039/d0ra04129g
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