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タイトルModeling of carbon monoxide oxidation kinetics over NASA carbon dioxide laser catalysts
本文(外部サイト)http://hdl.handle.net/2060/19900018569
著者(英)Herz, Richard K.
著者所属(英)California Univ., San Diego
発行日1989-01-01
言語eng
内容記述The recombination of CO and O2 formed by the dissociation of CO2 in a sealed CO2 laser discharge zone is examined. Conventional base-metal-oxide catalysts and conventional noble-metal catalysts are not effective in recombining the low O2/CO ratio at the low temperatures used by the lasers. The use of Pt/SnO2 as the noble-metal reducible-oxide (NMRO), or other related materials from Group VIIIA and IB and SnO2 interact synergistically to produce a catalytic activity that is substantially higher than either componet separately. The Pt/SnO2 and Pd/SnO2 were reported to have significant reaction rates at temperatures as low as -27 C, conditions under which conventional catalysts are inactive. The gas temperature range of lasers is 0 + or - 40 C. There are three general ways in which the NMRO composite materials can interact synergistically: one component altering the properties of another component; the two components each providing independent catalytic functions in a complex reaction mechanism; and the formation of catalytic sites through the combination of two components at the atomic level. All three of these interactions may be important in low temperature CO oxidation over NMRO catalysts. The effect of the noble metal on the oxide is discussed first, followed by the effect of the oxide on the noble metal, the interaction of the noble metal and oxide to form catalytic sites, and the possible ways in which the CO oxidation reaction is catalyzed by the NMRO materials.
NASA分類INORGANIC AND PHYSICAL CHEMISTRY
レポートNO90N27885
NAS 1.26:186356
NASA-CR-186356
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/136580


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