Direct decomposition of NO into N2 and O2 on BaMnO3-based perovskite oxides
Effects of dopant in BaMnO3 perovskite oxide on the NO direct decomposition activity were investigated. NO direct decomposition activity was greatly elevated by doping La and Mg for Ba and Mn site in BaMnO3, respectively. The highest N2 yield was achieved on Ba0.8La0.2Mn0.8Mg0.2O3. The NO decomposit...
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Published in | Applied catalysis. B, Environmental Vol. 74; no. 3-4; pp. 299 - 306 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Amsterdam
Elsevier B.V
31.07.2007
Elsevier |
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Abstract | Effects of dopant in BaMnO3 perovskite oxide on the NO direct decomposition activity were investigated. NO direct decomposition activity was greatly elevated by doping La and Mg for Ba and Mn site in BaMnO3, respectively. The highest N2 yield was achieved on Ba0.8La0.2Mn0.8Mg0.2O3. The NO decomposition rate increased with increasing NO partial pressure with PNO1.19. Coexistence of oxygen lowered the N2 yield with PO2−0.18; however, N2 yield of 40% was sustained even under coexisting of 5% O2 at 1123K. Adsorption state of oxygen was also studied with temperature programmed desorption (TPD) method and the desorption temperature of oxygen was lowered by doping Mg for Mn site in BaMnO3. |
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AbstractList | Effects of dopant in BaMnO3 perovskite oxide on the NO direct decomposition activity were investigated. NO direct decomposition activity was greatly elevated by doping La and Mg for Ba and Mn site in BaMnO3, respectively. The highest N2 yield was achieved on Ba0.8La0.2Mn0.8Mg0.2O3. The NO decomposition rate increased with increasing NO partial pressure with PNO1.19. Coexistence of oxygen lowered the N2 yield with PO2-0.18; however, N2 yield of 40% was sustained even under coexisting of 5% O2 at 1123K. Adsorption state of oxygen was also studied with temperature programmed desorption (TPD) method and the desorption temperature of oxygen was lowered by doping Mg for Mn site in BaMnO3. Effects of dopant in BaMnO3 perovskite oxide on the NO direct decomposition activity were investigated. NO direct decomposition activity was greatly elevated by doping La and Mg for Ba and Mn site in BaMnO3, respectively. The highest N2 yield was achieved on Ba0.8La0.2Mn0.8Mg0.2O3. The NO decomposition rate increased with increasing NO partial pressure with PNO1.19. Coexistence of oxygen lowered the N2 yield with PO2−0.18; however, N2 yield of 40% was sustained even under coexisting of 5% O2 at 1123K. Adsorption state of oxygen was also studied with temperature programmed desorption (TPD) method and the desorption temperature of oxygen was lowered by doping Mg for Mn site in BaMnO3. |
Author | Matsumoto, Hiroshige Yano, Hiroshi Iwakuni, Hideharu Ishihara, Tatsumi Shinmyou, Yusuke |
Author_xml | – sequence: 1 givenname: Hideharu surname: Iwakuni fullname: Iwakuni, Hideharu – sequence: 2 givenname: Yusuke surname: Shinmyou fullname: Shinmyou, Yusuke – sequence: 3 givenname: Hiroshi surname: Yano fullname: Yano, Hiroshi – sequence: 4 givenname: Hiroshige surname: Matsumoto fullname: Matsumoto, Hiroshige – sequence: 5 givenname: Tatsumi surname: Ishihara fullname: Ishihara, Tatsumi email: ishihara@cstf.kyushu-u.ac.jp |
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Keywords | Dopant effects Perovskite oxide NO decomposition BaMnO3 Heterogeneous catalysis Perovskite type compound Oxides Decomposition Environmental protection |
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Snippet | Effects of dopant in BaMnO3 perovskite oxide on the NO direct decomposition activity were investigated. NO direct decomposition activity was greatly elevated... |
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SubjectTerms | BaMnO3 Catalysis Chemistry Dopant effects Exact sciences and technology General and physical chemistry NO decomposition Perovskite oxide Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry |
Title | Direct decomposition of NO into N2 and O2 on BaMnO3-based perovskite oxides |
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