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A comparative investigation of NdSrCu_(1-x) Co_x O_(4-δ) and Sm_(1.8) Ce_(0.2) Cu_(1-x) Co_x O_(4-δ) (x:0–0.4) for NO decomposition 被引量:2

A comparative investigation of NdSrCu_(1-x) Co_x O_(4-δ) and Sm_(1.8) Ce_(0.2) Cu_(1-x) Co_x O_(4-δ) (x:0–0.4) for NO decomposition
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摘要 A series of single-phase T-structured NdSrCu 1-x Co x O 4-δ with oxygen vacancies and T -structured Sm 1.8 Ce 0.2 Cu 1-x Co x O 4-δ (x: 0–0.4) with oxygen excess were prepared using ultrasound-assisted citric acid complexing method, and characterized by means of techniques such as thermogravimetric analysis and NO temperature-programmed desorption (NO-TPD). The catalytic activities of these materials were evaluated for the decomposition of NO. It was found that the NdSrCu 1-x Co x O 4-δ catalysts were of oxygen vacancies whereas the Sm 1.8 Ce 0.2 Cu 1?x Co x O 4-δ ones possessed excessive oxygen (i.e., over-stoichiometric oxygen); with a rise in Co doping level, the oxygen vacancy density of NdSrCu 1-x Co x O 4-δ decreased while the over-stoichiometric oxygen amount of Sm 1.8 Ce 0.2 Cu 1-x Co x O 4-δ increased. The NO-TPD results revealed that NO could be activated much easier over the oxygen-deficient perovskite-like oxides than over the oxygen-excessive perovskite-like oxides, with the NdSrCuO 3.702 catalyst showing the best efficiency in activating NO molecules. Under the conditions of 1.0% NO/helium, 2800 hr -1 , and 600–900°C, the catalytic activity of NO decomposition followed the order of NdSrCuO 3.702 〉 NdSrCu 0.8 Co 0.2 O 3.736 〉 NdSrCu 0.6 Co 0.4 O 3.789 〉 Sm 1.8 Ce 0.2 Cu 0.6 Co 0.4 O 4.187 〉 Sm 1.8 Ce 0.2 Cu 0.8 Co 0.2 O 4.104 〉 Sm 1.8 Ce 0.2 CuO 4.045 , in concord with the sequence of decreasing oxygen vacancy or oxygen excess density. Based on the results, we concluded that the higher oxygen vacancy density and the stronger Cu 3+ /Cu 2+ redox ability of NdSrCu 1-x Co x O 4-δ account for the easier activation of NO and consequently improve the catalytic activity of NO decomposition over the catalysts. A series of single-phase T-structured NdSrCu 1-x Co x O 4-δ with oxygen vacancies and T -structured Sm 1.8 Ce 0.2 Cu 1-x Co x O 4-δ (x: 0–0.4) with oxygen excess were prepared using ultrasound-assisted citric acid complexing method, and characterized by means of techniques such as thermogravimetric analysis and NO temperature-programmed desorption (NO-TPD). The catalytic activities of these materials were evaluated for the decomposition of NO. It was found that the NdSrCu 1-x Co x O 4-δ catalysts were of oxygen vacancies whereas the Sm 1.8 Ce 0.2 Cu 1?x Co x O 4-δ ones possessed excessive oxygen (i.e., over-stoichiometric oxygen); with a rise in Co doping level, the oxygen vacancy density of NdSrCu 1-x Co x O 4-δ decreased while the over-stoichiometric oxygen amount of Sm 1.8 Ce 0.2 Cu 1-x Co x O 4-δ increased. The NO-TPD results revealed that NO could be activated much easier over the oxygen-deficient perovskite-like oxides than over the oxygen-excessive perovskite-like oxides, with the NdSrCuO 3.702 catalyst showing the best efficiency in activating NO molecules. Under the conditions of 1.0% NO/helium, 2800 hr -1 , and 600–900°C, the catalytic activity of NO decomposition followed the order of NdSrCuO 3.702 〉 NdSrCu 0.8 Co 0.2 O 3.736 〉 NdSrCu 0.6 Co 0.4 O 3.789 〉 Sm 1.8 Ce 0.2 Cu 0.6 Co 0.4 O 4.187 〉 Sm 1.8 Ce 0.2 Cu 0.8 Co 0.2 O 4.104 〉 Sm 1.8 Ce 0.2 CuO 4.045 , in concord with the sequence of decreasing oxygen vacancy or oxygen excess density. Based on the results, we concluded that the higher oxygen vacancy density and the stronger Cu 3+ /Cu 2+ redox ability of NdSrCu 1-x Co x O 4-δ account for the easier activation of NO and consequently improve the catalytic activity of NO decomposition over the catalysts.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2010年第3期448-453,共6页 环境科学学报(英文版)
基金 supported by the Natural Science Foundation of Beijing Municipality Key Class B Project (No.KZ200610005004) the Beijing Municipal Commission of Education (No. PHR200907105) the Academic Human Resources Development in Institutions of Higher Learning under the Jurisdiction of Beijing Municipality(PHR (IHLB))
关键词 perovskite-like oxide catalysts NO decomposition oxygen nonstoichiometry Cu^ 3+ /Cu ^2+ Cu^ 2+ /Cu^ perovskite-like oxide catalysts NO decomposition oxygen nonstoichiometry Cu^ 3+ /Cu ^2+ Cu^ 2+ /Cu^ +
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  • 1Centi G, Perathoner S, 1995. Nature of active species in copperbased catalysts and their chemistry of transformation of nitrogen oxides. Applied Catalysis A: General, 132(2): 179-259.
  • 2Christopher J, Swamy C S, 1990. Catalytic decomposition of N2O on ternary oxides containing copper in different valence states. Journal of Molecular Catalysis, 62(1): 69-78.
  • 3Dandekar A, Vannice M A, 1999. Decomposition and reduction of N2O over copper catalysts. Applied Catalysis B: Environmental, 22(3): 179-200.
  • 4Deng J G, Zhang L, Dai H X, He H, Au C T, 2009. Preparation, characterization, and catalytic properties of NdSrCu1-xCoxO4-δ and Sm1.8Ce0.2CU1-xCoxO4-δ (x = 0, 0.2 and 0.4) for methane combustion. Applied Catalysis B: Environmental, 89(1-2): 87-96.
  • 5Gao L Z, Au C T, 2001. Studies on the decomposition of N2O over Nd2CuO4, Nd1.6Ba0.4CuO4 and Nd1.8Ce0.2CuO4. Journal of Molecular Catalysis A: Chemical, 168(1-2): 173-186.
  • 6Gao L Z, Chua H T, Kawi S, 2008. The direct decomposition of NO over the La2CuO4 nanofiber catalyst. Journal of Solid State Chemistry, 181(10): 2804-2807.
  • 7Haneda M, Kintaichi Y, Bion N, Hamada H, 2003. Alkali metal-doped cobalt oxide catalysts for NO decomposition. Applied Catalysis B: Environmental, 46(3): 473-482.
  • 8Ishihara T, Ando M, Sada K, Takiishi K, Yamada K, Nishiguchi H et al., 2003. Direct decomposition of NO into N2 and O2 over La(Ba)Mn(In)O3 perovskite oxide. Journal of Catalysis, 220(1): 104-114.
  • 9Iwakuni H, Shinmyou Y, Yano H, Matsumoto H, Ishihara T, 2007. Direct decomposition of NO into N2 and O2 on BaMnOa-based perovskite oxides. Applied Catalysis B: Environmental, 74(3-4): 299-306.
  • 10Kasai P H, Bishop R J, 1977. Thermochemical decomposition of water catalyzed by zeolites. The Journal of Physical Chemistry, 81(15): 1527-1529.

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