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Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust

Perovskite-type catalysts were widely used in the field of automobile exhaust purification due to their inherent physicochemical properties and excellent doping characteristics. A series of La(1−x)M(x)Co(1−y)N(y)O(3) (M = Ce, Ca; N = Fe, Mn) perovskite-type catalyst samples were prepared by sol-gel...

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Autores principales: Wang, Yinghui, Guo, Xiurong, Du, Danfeng, Yang, Shaochi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228900/
https://www.ncbi.nlm.nih.gov/pubmed/35744208
http://dx.doi.org/10.3390/ma15124149
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author Wang, Yinghui
Guo, Xiurong
Du, Danfeng
Yang, Shaochi
author_facet Wang, Yinghui
Guo, Xiurong
Du, Danfeng
Yang, Shaochi
author_sort Wang, Yinghui
collection PubMed
description Perovskite-type catalysts were widely used in the field of automobile exhaust purification due to their inherent physicochemical properties and excellent doping characteristics. A series of La(1−x)M(x)Co(1−y)N(y)O(3) (M = Ce, Ca; N = Fe, Mn) perovskite-type catalyst samples were prepared by sol-gel method for the four-way purification of PM, NO(x), CO, and HC emitted by diesel exhaust. The activity of catalyst samples was tested by simulation experiments and hydrogen temperature-programmed reduction (H(2)-TPR). Catalyst samples were characterized by means of XRD, FT-IR, SEM, BET, and XPS analysis. The results demonstrated that the perovskite-type catalyst samples with a particle pore size of 3–5 μm can be prepared by sol-gel method. When A-site of LaCoO(3) perovskite-type oxide was doped by cerium ions, the catalyst samples produced small distortion. The doping of cerium ions to A-site was more conducive to the four-way purification of diesel exhaust than calcium ions. La(0.8)Ce(0.2)CoO(3) perovskite-type samples showed the best purification efficiency, and the purification efficiencies of PM, NO(x), CO, and HC were 90%, 85%, 94%, and 100%, respectively. When the B-site of La(0.8)Ce(0.2)CoO(3) perovskite was doped with iron ions, the purification efficiency of catalyst samples for PM and NO(x) can be further enhanced. When the B-site of La(0.8)Ce(0.2)CoO(3) perovskite was doped with manganese ions, the purification efficiency of the catalyst samples for PM can be further enhanced. It can be seen from the simulation experiments that La(0.8)Ce(0.2)Co(0.7)Fe(0.3)O(3) perovskite was the best doping amount, and the purification efficiencies of PM, NO(x), CO, and HC were 95%, 92%, 94%, and 100%, respectively.
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spelling pubmed-92289002022-06-25 Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust Wang, Yinghui Guo, Xiurong Du, Danfeng Yang, Shaochi Materials (Basel) Article Perovskite-type catalysts were widely used in the field of automobile exhaust purification due to their inherent physicochemical properties and excellent doping characteristics. A series of La(1−x)M(x)Co(1−y)N(y)O(3) (M = Ce, Ca; N = Fe, Mn) perovskite-type catalyst samples were prepared by sol-gel method for the four-way purification of PM, NO(x), CO, and HC emitted by diesel exhaust. The activity of catalyst samples was tested by simulation experiments and hydrogen temperature-programmed reduction (H(2)-TPR). Catalyst samples were characterized by means of XRD, FT-IR, SEM, BET, and XPS analysis. The results demonstrated that the perovskite-type catalyst samples with a particle pore size of 3–5 μm can be prepared by sol-gel method. When A-site of LaCoO(3) perovskite-type oxide was doped by cerium ions, the catalyst samples produced small distortion. The doping of cerium ions to A-site was more conducive to the four-way purification of diesel exhaust than calcium ions. La(0.8)Ce(0.2)CoO(3) perovskite-type samples showed the best purification efficiency, and the purification efficiencies of PM, NO(x), CO, and HC were 90%, 85%, 94%, and 100%, respectively. When the B-site of La(0.8)Ce(0.2)CoO(3) perovskite was doped with iron ions, the purification efficiency of catalyst samples for PM and NO(x) can be further enhanced. When the B-site of La(0.8)Ce(0.2)CoO(3) perovskite was doped with manganese ions, the purification efficiency of the catalyst samples for PM can be further enhanced. It can be seen from the simulation experiments that La(0.8)Ce(0.2)Co(0.7)Fe(0.3)O(3) perovskite was the best doping amount, and the purification efficiencies of PM, NO(x), CO, and HC were 95%, 92%, 94%, and 100%, respectively. MDPI 2022-06-10 /pmc/articles/PMC9228900/ /pubmed/35744208 http://dx.doi.org/10.3390/ma15124149 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Yinghui
Guo, Xiurong
Du, Danfeng
Yang, Shaochi
Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust
title Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust
title_full Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust
title_fullStr Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust
title_full_unstemmed Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust
title_short Study of Ce, Ca, Fe, and Mn-Doped LaCoO(3) Perovskite Oxide for the Four-Way Purification of PM, NO(x), CO, and HC from Diesel Engine Exhaust
title_sort study of ce, ca, fe, and mn-doped lacoo(3) perovskite oxide for the four-way purification of pm, no(x), co, and hc from diesel engine exhaust
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228900/
https://www.ncbi.nlm.nih.gov/pubmed/35744208
http://dx.doi.org/10.3390/ma15124149
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