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The Stability of Monolith CuZSM-5 Catalysts for the Selective Reduction of Nitrogen Oxides with Hydrocarbons: I. Synthesis and Characterization of Bulk CuZSM-5 Catalysts Full article

Journal Kinetics and Catalysis
ISSN: 0023-1584 , E-ISSN: 1608-3210
Output data Year: 2001, Volume: 42, Number: 6, Pages: 847-853 Pages count : 7 DOI: 10.1023/A:1013243502594
Tags Copper; Zeolite; Hydrocarbon; Propane; Catalytic Activity
Authors Ismagilov Z.R. 1 , Shkrabina R.A. 1 , Tsikoza L.T. 1 , Yashnik S.A. 1 , Sazonov V.A. 1 , Kuznetsov V.V. 1 , Luzgin M.V. 1 , Kalinkin A.V. 1 , Veringa H.J. 2
Affiliations
1 Boreskov Institute of Catalysis, Siberian Division, Russian Academy of Sciences, Novosibirsk, 630090 Russia
2 Energy Research Foundation, Petten, Netherlands

Abstract: The effects of ion-exchange conditions (the pH, the copper concentration in solution, and the solution-to-zeolite volume ratio) and the Si/Al atomic ratio of HZSM-5 zeolite on the concentration and state of copper in bulk CuZSM-5 catalysts and on the catalytic activity in the selective reduction of NO with propane were studied. It was found that the concentration and state of copper in the catalysts essentially depend on the pH of the solution used for ion exchange and on the copper concentration in this solution. An increase in the solution-to-zeolite volume ratio has almost no effect on the above characteristics. Regardless of the Si/Al atomic ratio of zeolite and of the pH of solution, a maximum activity (NO conversion) of the resulting catalyst is attained even at an exchange level (Cu/Al) close to 100% (80–140%). The absolute value of this catalytic activity depends only on the reaction temperature and is equal to 22–31% at 300°C or 85–97% at 400–500°C. The above exchange level is maximally attainable at pH ∼6 in the chosen range of copper acetate concentrations in solution (2–10 mg/ml accounted as CuO). An increase in the pH of ion exchange up to ∼100% allows a wider variation in the exchange level and the state of copper in the zeolite with the same range of copper concentration in the solution. However, at Cu/Al ≫ 100% (up to ∼430%), the catalyst activity is independent of the exchange level. The state of copper in freshly prepared samples affects the stability of the catalysts in storage. In turn, the state of copper depends on ion-exchange conditions and the Cu/Al ratio.
Cite: Ismagilov Z.R. , Shkrabina R.A. , Tsikoza L.T. , Yashnik S.A. , Sazonov V.A. , Kuznetsov V.V. , Luzgin M.V. , Kalinkin A.V. , Veringa H.J.
The Stability of Monolith CuZSM-5 Catalysts for the Selective Reduction of Nitrogen Oxides with Hydrocarbons: I. Synthesis and Characterization of Bulk CuZSM-5 Catalysts
Kinetics and Catalysis. 2001. V.42. N6. P.847-853. DOI: 10.1023/A:1013243502594 WOS Scopus РИНЦ ANCAN OpenAlex
Original: Исмагилов З.Р. , Шкрабина Р.А. , Цикоза Л.Т. , Яшник С.А. , Сазонов В.А. , Кузнецов В.В. , Лузгин М.В. , Калинкин А.В. , Веринга Х.
Стабильность блочных катализаторов CuZSM-5 для процессов селективного восстановления оксидов азота углеводородами. I. Синтез и исследование массивных катализаторов CuZSM-5
Кинетика и катализ. 2001. Т.42. №6. С.928-934. РИНЦ
Dates:
Submitted: Jun 23, 2000
Published print: Nov 1, 2001
Identifiers:
Web of science: WOS:000173018500019
Scopus: 2-s2.0-0037968184
Elibrary: 13376465
Chemical Abstracts: 2002:30752
Chemical Abstracts (print): 136:298855
OpenAlex: W2008952237
Citing:
DB Citing
Web of science 9
Scopus 9
Elibrary 10
OpenAlex 7
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