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对一氧化碳还原氧化铜一体化实验的优化设计 被引量:3
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作者 仇荣亚 李德前 《中国现代教育装备》 2022年第6期71-72,共2页
在实验教学中,对文献中的一氧化碳还原氧化铜一体化实验进行了优化,增加了气体循环系统,确保有充足的一氧化碳用以还原氧化铜,并利用湿润的氯化钯试纸检验一氧化碳的存在,提高了实验教学的有效性。
关键词 一氧化碳还原性 一体化实验装置 优化设计
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Carbon monoxide oxidation on copper manganese oxides prepared by selective etching with ammonia 被引量:5
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作者 石磊 胡臻浩 +1 位作者 邓高明 李文翠 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1920-1927,共8页
A series of copper manganese oxides were prepared using a selective etching technique with various amounts of ammonia added during the co-precipitation process. The effect of the ammonia etching on the structure and c... A series of copper manganese oxides were prepared using a selective etching technique with various amounts of ammonia added during the co-precipitation process. The effect of the ammonia etching on the structure and catalytic properties of the copper manganese oxides was investigated using elemental analysis, nitrogen physisorption, X-ray powder diffraction, scanning and transmission electron microscopy, X-ray photoelectron spectroscopy, H2 temperature-programmed reduc- tion, and Oz temperature-programmed desorption combined with catalytic oxidation of CO. It was found that ammonia can selectively remove copper species from the copper manganese oxides, which correspondingly generates more defects in these oxides. An oxygen spillover from the man- ganese to the copper species was observed by H2 temperature-programmed desorption, indicating that ammonia etching enhanced the mobility of lattice oxygen species in these oxides. The Oz tem- perature-programmed desorption measurements further revealed that ammonia etching improved the ability of these oxides to release lattice oxygen. The improvement in redox properties of the copper manganese oxides following ammonia etching was associated with enhanced catalytic performance for CO oxidation. 展开更多
关键词 Copper manganese oxide Selective etchingRedox property CO oxidation Co-precipitation
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Laws of Reduction of NO with Carbon Monoxide Using a Magnetic Field Effect
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作者 Aibassov Erkin Zhakenovich Yemelyanova Valentina Stepanovna Aibassov Gizatulla Yerkinovich Shakieva Tatyana Vladimirovna Abenov Bakhyt 《Journal of Chemistry and Chemical Engineering》 2014年第12期1162-1165,共4页
We first received the previously unknown pattern of the magnetic field and relativistic effects on chemical reactions in catalysis for example, reduction NO with monooxide carbon with used magnetic uranium catalysts, ... We first received the previously unknown pattern of the magnetic field and relativistic effects on chemical reactions in catalysis for example, reduction NO with monooxide carbon with used magnetic uranium catalysts, which is to reduce the activation energy of the reactants with increasing concentration of magnetic materials and due to the interaction and control of the motion of ions and electrons with atoms and attraction between ions by means of a magnetic field. 展开更多
关键词 Magnetic field effect reduction of NO carbon monoxide
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