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A study of the dynamics of Pd oxidation and PdO reduction by H-2 and CH4

机译:H-2和CH4对Pd氧化和PdO还原动力学的研究

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Palladium is one of the most active catalysts for the catalytic combustion of methane. Since Pd is oxidized during methane combustion to PdO and PdO is required for high activity, it is of interest to understand the dynamics of Pd oxidation and the structure of the oxide formed as well as the dynamics of PdO reduction by H-2 and CH4. In the present study isothermal and temperature-programmed oxidation and reduction were used to probe the dynamics of the oxidation and reduction of zirconia-supported Pd. During uptake in oxygen, a monolayer of oxide is generated immediately, and upon further oxidation, the oxide forms a shell around a core of metal with thicknesses that increase with the oxidation temperature. The initial oxide is amorphous and subsequently transforms to crystalline PdO. The dynamics of Pd oxidation suggest that oxidation follows the Cabrera-Mott theory. Reduction of PdO by H-2 occurs in a shellwise manner, consistent with a shrinking core mechanism, while reduction in CH4 occurs via an autocatalytic, nucleation mechanism. In the latter case, small particles of Pd must first be formed on which CH4 can dissociate. The fragments (H and CHx (x = 3-1)) diffuse to the metal-oxide boundary where reduction of the oxide occurs. Consistent with this picture, the kinetics of PdO reduction are first order in Pd initially, but then they become zero Order in Pd. (C) 1998 Academic Press. [References: 38]
机译:钯是甲烷催化燃烧最活跃的催化剂之一。由于Pd在甲烷燃烧过程中被氧化为PdO,并且PdO需要高活性,因此有兴趣了解Pd氧化的动力学和所形成的氧化物的结构以及H-2和CH4还原PdO的动力学。在本研究中,等温和程序升温氧化和还原用于探测氧化锆负载的Pd氧化和还原的动力学。在吸收氧气的过程中,会立即生成一层单层的氧化物,进一步氧化后,氧化物会在金属核周围形成壳,其厚度会随着氧化温度的增加而增加。初始氧化物是无定形的,随后转变为结晶PdO。 Pd氧化的动力学表明氧化遵循Cabrera-Mott理论。 H-2对PdO的还原以壳层方式发生,这与核心机制的收缩是一致的,而CH4的还原则通过自催化成核机制发生。在后一种情况下,必须首先形成Pd小颗粒,CH4可以在该小颗粒上分解。碎片(H和CHx(x = 3-1))扩散到发生氧化物还原的金属氧化物边界。与该图一致,PdO还原的动力学最初在Pd中为第一级,但随后在Pd中变为零级。 (C)1998年学术出版社。 [参考:38]

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