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Preparation of Mixed Oxide Powders in the System CeO_2-MO_x (M = Transition and Rare Earth Metals) by Coprecipitation Method for the Purification Catalysts of Automotive Emission

机译:通过CopRecitipition方法制备系统CeO_2-Mo_x(M =转变和稀土金属)的混合氧化物粉末的纯化催化剂的纯化催化剂

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摘要

Powders in the CeO_2-ZrO_2-MO_x system were prepared by coprecipitation method. Influence of adding a third components MO_x of transition metal oxides and rate earth metal oxides on the specific surfaace area (SA) and oxygen storage capacity (OSC) were investigated. It was found that transition metal oxides decrease drastically both SA and OSC values at 1000 deg C. On the other hand, rare earth metal oxides slightly decreased OSC values. The OSC values of the 20CeO_2-(80-y)ZrO_2-yMO_x powders with y = 0-20 mol% LaO_1.5, showed a maximum around 6 mol% LaO_1.5. In the CeO_2-ZrO_2-MO_x system, 20CeO_2·6LaO_1.5 (mol%) powders exhibited the most efficient performance with a high thermal stability up to 1000 deg C.
机译:CEO_2-ZRO_2-MO_X系统中的粉末通过COPRECIPITITITION方法制备。 研究了加工金属氧化物的第三组分Mo_x的影响和速率接地金属氧化物对特定的表面(SA)和氧气储存能力(OSC)。 发现过渡金属氧化物在1000℃下急剧上减少SA和OSC值。另一方面,稀土金属氧化物略微降低OSC值。 20CEO_2-(80-Y)ZrO_2-YMO_x粉末的OSC值,Y = 0-20mol%LAO_1.5显示最大约6mol%的老挝1.5。 在CEO_2-ZRO_2-MO_X系统中,20CEO_2·6LAO_1.5(MOL%)粉末表现出最有效的性能,具有高达1000℃的高热稳定性。

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