Development of multicomponent metal-oxide of catalysts of neutralization of internal combustion engine exhausts
DOI:
https://doi.org/10.15587/1729-4061.2010.2679Keywords:
cobalt oxyde, promoter, secondary carrier, cordierite, reactions of three-componental transformationsAbstract
The influence of promoters (Pt, Pd), modifying additives (СеО2, СеО2-ZrO2) and the secondary carrier (γ-Al2O3) on physical and chemical properties of catalyst Со3О4/kordierite in reactions of three-component transformations (СО/NOх/CnHm) is studied.References
- Kaspar J., Fornasiero P., Hickey N. Automotive catalytic converters: current status and some perspectives// Catal. Today, 2003. – 77. - N 1-2. - P.419–449.
- Дробот Д.В., Буслаева Т.М. Редкие и платиновые металлы в XX-XXI вв.// Рос.хим. журнал, 2001. т. 45, №2, с.46-55.
- Sigov A.S., Yevdokimov A.A., Shinkarenko V.V. On the global Platinum-palladium revolution and educational problems 3nd International Conference «XI’AN-PM’2008» Platinum metals in modern industry, hydrogen energy and life-support spheres// China, 2008. - Р.1-4.
- Luo J.Y., Meng M., Li X. at al. Mesoporous Co3O4–CeO2 and Pd/Co3O4–CeO2 catalysts: Synthesis, characterization and mechanistic study of their catalytic properties for low-temperature CO oxidation // J. Catal., 2008. – 254, P 310–324.
- Большаков А.М, Большакова Л.Д., Щегольков Ю.Н. и др. Химическое конструирование бинарных TWC-катализаторов для конверсии NOx, CO и углеводородов //Химия в интересах устойчивого развития, 2005. - 13, C. 737-742.
- Marques R., Mazri L., Da Costa S. Selective reduction of NOx by hydrogen and methane in natural gas stationary sources over alumina-supported Pd, Co and Co/Pd catalysts Part A. On the effect of palladium precursors and catalyst pre-treatment // Catal.Today, 2008, V.- 137, P.-179-184.
- Todorova S., Kadinov G., Tenchev K.et al. Co3O4 + CeO2/SiO2 Catalysts for n-Hexane and CO Oxidation // Catal. Lett., 2009. - 129, P. 149-155.
- Dhakad M., Mitshuhashi T., Rayalu S. Co3O4–CeO2 mixed oxide-based catalytic materials for diesel soot oxidation // Catal. Today, 2008, V. - 132, P.- 188-193.
- Hou X.D., Wang Y.Zh., Zhao Y.X. Effect of CeO2 Doping on Structure and Catalytic Performance of Co3O4 Catalyst for Low-Temperature CO Oxidation // Catal. Lett., 2008. - 123, P. 321–326.
- Artizzua P., Garbowskia E., Primeta M. Catalytic combustion of methane on aluminate-supported cupper oxide // Catal.Today, 1999. - 47, P.-83-93.
- Соловьев С.А., Курилець Я.П., Орлик С.Н. Влияние вторичного носителя γAl2O3 на физико-химические характеристики катализаторов трехмаршрутных превращений CO/NOx/CnHm // Теорет. и эксперим. химия, 2003. – 39, № 1, С. 50-54.
- Solsona B., Davies Th.E., Garcia T. et. al. Total oxidation of propane using nanocrystalline cobalt oxide and supported cobalt oxide catalysts // Appl. Catal. B., 2008, V.-84, P.- 176-184.
- Bianchi C.L. TPR and XPS Investigations of Co/Al2O3 Catalysts Promoted with Ru, Ir and Pt // Catalysis Letters, 2001.-76.-N. 3–4, -P. 155-158.
- Кириенко П.И., Соловьев С.А. Влияние Pd и оксидов редкоземельных элементов (La2O3, CeO2) на свойства катализатора Co3O4/кордиерит в реакциях восстановления О2 и NO водородом// Теорет. и эксперим. химия, 2009. – 45, №4. – С. 253-256.
- Большаков А.М, Сергеева О.В., Минин В.В., и др. Спилловер кислорода при конверсии NO на Pd-Co/γ-Al2O3 катализаторе // Теорет.и эксперим.химия, 2001, T. 37, C. 86-89.
- Лю Ч., Луо Л., Лу К. Приготовление мезопористых смешанных оксидов Ce1-xFexO2 и их каталитические свойства в реакции горения метана// Кинетика и катализ, 2008. –49, № 5, С. 707-712.
- Liotta L.F., Di Carlo G., Longo A., et al. Support effect on the catalytic performance of Au/Co3O4–CeO2 catalysts for CO and CH4 oxidation // Catal. Today, 2008, - 139, P. 174–179.
- Di Monte R., Kaspar J. On the role of oxygen storage in three-way catalysis // Top. Catal. 2004, V. - 28, P. - 47-57.
- Марголис Л.Я., Корчак В.Н. Взаимодействие углеводородов с катализаторами парциального окисления //Успехи химии, 1998, Т. 67, № 12, С. 1175-1185.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2014 П.И. Кириенко, Н.А. Попович, С.А. Соловьев, Ю.В. Князев, О.О. Слипец, Е.А. Соловьева
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.
A license agreement is a document in which the author warrants that he/she owns all copyright for the work (manuscript, article, etc.).
The authors, signing the License Agreement with TECHNOLOGY CENTER PC, have all rights to the further use of their work, provided that they link to our edition in which the work was published.
According to the terms of the License Agreement, the Publisher TECHNOLOGY CENTER PC does not take away your copyrights and receives permission from the authors to use and dissemination of the publication through the world's scientific resources (own electronic resources, scientometric databases, repositories, libraries, etc.).
In the absence of a signed License Agreement or in the absence of this agreement of identifiers allowing to identify the identity of the author, the editors have no right to work with the manuscript.
It is important to remember that there is another type of agreement between authors and publishers – when copyright is transferred from the authors to the publisher. In this case, the authors lose ownership of their work and may not use it in any way.