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Thermal decomposition and reformation of PdO catalysts; support effects

机译:PdO催化剂的热分解和重整;支持效果

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The thermal decomposition of PdO and the reformation of Pd to PdO is dependent on the support upon which they are dispersed indicating significant metal (oxide) support interactions. The study defines temperature regions of different stabilities for Pd:O species. The nature of the Pd:O structure is of great importance for a large number of environmental catalytic applications including the gasoline automobile catalytic converter, ozone decomposition catalysts, abating emissions from natural gas fueled vehicles, primary combustion catalysts, etc. The ZrO2 support shows the largest hysteresis effect between the temperature of decomposition and reformation. In contrast both TiO2 and CeO2 have small hysteresis effects because of a significant increase in the temperature for reformation of the PdO. There exists a large region of temperature stability of the PdO when dispersed on these two carriers. This is quite favorable for those catalytic reactions where the oxide state is important such as the primary catalytic combustion of natural gas. Further evidence of the importance of PdO for methane oxidation is presented.
机译:PdO的热分解和Pd到PdO的重整取决于分散在其上的载体,表明存在明显的金属(氧化物)载体相互作用。该研究定义了Pd:O物种不同稳定性的温度区域。 Pd:O结构的性质对于许多环境催化应用至关重要,包括汽油汽车催化转化器,臭氧分解催化剂,减少天然气燃料汽车排放的废气,一次燃烧催化剂等。ZrO2载体表明分解温度和重整温度之间的最大磁滞效应。相反,由于重整PdO的温度明显升高,TiO2和CeO2都具有较小的磁滞效应。当分散在这两个载体上时,PdO存在很大的温度稳定性区域。对于其中氧化物状态很重要的那些催化反应,例如天然气的一次催化燃烧,这是非常有利的。进一步证明了PdO对甲烷氧化的重要性。

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