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Featured researches published by Mamoru Mizumoto.


Journal of Catalysis | 1978

Catalytic reduction of NO with ammonia over Cu(II) NaY

Mamoru Mizumoto; Noboru Yamazoe; Tetsuro Seiyama

Abstract The mechanism of the catalytic reduction of NO with NH 3 over Cu(II) ion-exchanged Y-type zeolites [Cu(II) NaY] was examined by kinetic and isotopic tracer studies as well as relevant studies on the transient reaction of reduced catalysts. The rate of the NONH 3 reaction showed dependence on the partial pressures of both No and NH 3 , in accordance with the Langmuir-Hinshelwood type of rate equation. The isotopic tracer studies using 15 N-labeled ammonia and NO indicated that N 2 was mainly formed by bi-molecular reaction between NO and ammonia, while the nitrogen atom of nitrous oxide came soley from NO. These results support the reaction mechanism previously proposed. It has been shown that the “bell-shaped” catalytic activity-temperature relation of Cu(II) NaY is associated with the redox change of copper ions. The reoxidation step of Cu(I) ions to Cu(II) was studied in detail by allowing the reduced catalyst to react with gaseous mixtures of NO and NH 3 under various conditions. The results showed that Cu(I) ions were oxidized to Cu(II) by coupling with the stoichiometric disproportionation reaction of NO. The reaction was strongly promoted by the coexistence of NH 3 . Based on these results, the mechanism and the rate-determining step of the catalytic NONH 3 reaction were discussed.


Journal of Catalysis | 1979

Effects of coexisting gases on the catalytic reduction of NO with NH3 over Cu(II) NaY

Mamoru Mizumoto; Noboru Yamazoe; Tetsuro Seiyama


Archive | 1984

Catalyst stable at high temperature, process for preparing the catalyst, and process for carrying out chemical reaction using the catalyst

Akira Kato; Shinpei Matsuda; Mamoru Mizumoto; Hisao Yamashita


Archive | 1984

METHOD FOR USING HEAT RESISTANT CATALYST

Akira Kato; Shinpei Matsuda; Mamoru Mizumoto; Hisao Yamashita


Archive | 1991

Catalyst stable at high temperature, its preparation, and method for effecting chemical reaction using this catalyst

Akira Kato; Shinpei Matsuda; Mamoru Mizumoto; Hisao Yamashita; 加藤 明; 寿生 山下; 臣平 松田; 守 水本


Industrial & Engineering Chemistry Product Research and Development | 1985

Hydroliquefaction of coal with tin oxide catalyst

Mamoru Mizumoto; Hisao Yamashita; Shimpei Matsuda


Archive | 1984

CATALYST CARRIER STABLE AT HIGH TEMPERATURE AND ITS PREPARATION

Akira Kato; Shinpei Matsuda; Mamoru Mizumoto; Hisao Yamashita


Archive | 1984

Carrier for catalyst

Akira Kato; Shinpei Matsuda; Mamoru Mizumoto; Hisao Yamashita


Archive | 1983

Heat resistant catalyst and use thereof

Akira Kato; Shinpei Matsuda; Mamoru Mizumoto; Shigeo Uno; Hisao Yamashita


Archive | 1984

HEAT RESISTANT CARRIER COMPOSITION

Akira Kato; Shinpei Matsuda; Mamoru Mizumoto; Hisao Yamashita

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