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首页> 外文期刊>Journal of Catalysis >TPD STUDY OF MORDENITE-TYPE ZEOLITES FOR SELECTIVE CATALYTIC REDUCTION OF NO BY NH3
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TPD STUDY OF MORDENITE-TYPE ZEOLITES FOR SELECTIVE CATALYTIC REDUCTION OF NO BY NH3

机译:TPD研究丝光沸石对NH3选择性催化还原NO的影响

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The effect of the adsorption of NO and NH3 on catalytic activity has been examined by temperature-programmed desorption over a series of cation-exchanged mordenite catalysts for selective catalytic reduction (SCR) of NO by NH3. The catalytic activity observed in a packed-bed flow reactor was well correlated with the cation content of the catalyst and its adsorption properties, making it possible to elucidate the role of metals and acidity in this reaction system. The amount of NH3 and NO adsorbed on the catalyst surface proportionally increased with the degree of cation exchange of the catalyst, especially at the Bronsted acid site (H+) and the metal site (Cu2+). SCR activity also gradually increased with the acidity of the catalyst and/or its degree of catalyst cation exchange, Surface acidity of the mordenite catalysts appears to be a dominant factor in the high performance of the SCR reaction system. The common activation energy is observed to be about 12 kcal/mole for NaHM and CuHM catalysts, independent of their cation content on the catalyst surface. The active sties of this catalytic system are both the Bronsted acid site and the metal site. Furthermore, the reaction occurred in a Langmuir-Hinshewood manner with a dual-site catalysis mechanism. (C) 1996 Academic Press, Inc. [References: 22]
机译:通过在一系列阳离子交换的丝光沸石催化剂上进行程序升温脱附,研究了NO和NH3吸附对催化活性的影响,以通过NH3选择性还原NO(SCR)。在填充床流动反应器中观察到的催化活性与催化剂的阳离子含量及其吸附性能密切相关,从而有可能阐明金属和酸度在该反应系统中的作用。随着催化剂阳离子交换程度的增加,吸附在催化剂表面的NH3和NO的数量成比例增加,特别是在布朗斯台德酸位(H +)和金属位(Cu2 +)处。 SCR活性也随着催化剂的酸度和/或其催化剂阳离子交换程度而逐渐增加。丝光沸石催化剂的表面酸度似乎是SCR反应系统高性能的主要因素。对于NaHM和CuHM催化剂,观察到常见的活化能为约12kcal / mole,而与它们在催化剂表面上的阳离子含量无关。该催化体系的活性部位是布朗斯台德酸位点和金属位点。此外,该反应以Langmuir-Hinshewood方式发生,具有双中心催化机理。 (C)1996 Academic Press,Inc. [参考:22]

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