首页> 外国专利> Cerium/zirconium-base composite oxide, method for producing the same, oxygen storage/release component using said cerium-zirconium-base composite oxide, exhaust gas purification catalyst, and exhaust gas purification method using the same

Cerium/zirconium-base composite oxide, method for producing the same, oxygen storage/release component using said cerium-zirconium-base composite oxide, exhaust gas purification catalyst, and exhaust gas purification method using the same

机译:铈/锆基复合氧化物,其制备方法,使用所述铈锆基复合氧化物的储氧/释放组分,废气净化催化剂和使用其的废气净化方法

摘要

This invention relates to a cerium-zirconium-base composite oxide, which is useful, e.g., for the purification of exhaust gas discharged from combustion engines such as internal combustion engines and boilers and can release a high level of oxygen in a low temperature region, a method for producing the same, an oxygen storage/release component using the same, an exhaust gas purification catalyst, and an exhaust gas purification method. The cerium-zirconium-base composite oxide satisfies requirements (1) that the oxygen release initiation temperature is 380° C. or below, (2) that the oxygen release amount is not less than 485 μmol/g, and further (3) that the oxygen release amount at 400° C. is not less than 15 μmol/g. The cerium-zirconium-base composite oxide can be produced, for example, by mixing a starting material for cerium and a starting material for zirconium at a predetermined mixing ratio together, melting the starting material mixture at a temperature at or above the melting point, then cooling the melt to form an ingot, then optionally grinding the ingot to prepare powder, subsequently removing strain within powder crystal grains under heating, and then grinding to a further fine state.
机译:铈-锆-基复合氧化物本发明涉及一种铈-锆-基复合氧化物,其可用于例如净化从内燃机(例如内燃发动机和锅炉)中排出的废气,并可以在低温区域释放高水平的氧气,本发明涉及一种用于制造该装置的方法,一种用于制造该装置的方法,一种使用该装置的氧气存储/释放成分,一种废气净化催化剂以及一种废气净化方法。铈锆基复合氧化物满足以下条件:(1)氧释放开始温度为380℃以下;(2)氧释放量为485μmol/ g以上;(3) 400℃下的氧释放量为15μmol/ g以上。铈锆基复合氧化物可通过例如以预定的混合比将铈的起始材料和锆的起始材料混合在一起,在等于或高于熔点的温度下熔融该起始材料混合物来制备,然后冷却熔体以形成铸锭,然后任选地研磨铸锭以制备粉末,随后在加热下去除粉末晶粒内的应变,然后研磨至更细的状态。

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