首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Structure characterization of Pt-Re/TiO2 (rutile) and Pt-Re/ZrO2 catalysts for water gas shift reaction at low-temperature
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Structure characterization of Pt-Re/TiO2 (rutile) and Pt-Re/ZrO2 catalysts for water gas shift reaction at low-temperature

机译:低温水煤气变换反应用Pt-Re / TiO2(金红石)和Pt-Re / ZrO2催化剂的结构表征

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Pt-Re/TiO2 (R: rutile) and Pt-Re/ZrO2 catalysts, which have superior catalytic activity for the water gas shift reaction at low temperature (LT-WGS), were characterized by TEM and XPS measurements in order to examine the role of Re in enhancing catalytic activity. For the TiO2 (R)supported catalysts, TEM micrographs showed that Pt dispersion increased by Re addition to Pt/TiO2 (R). XPS spectra indicated that the electronic interaction between Pt and Re on the TiO2-supported catalysts is stronger than that on the ZrO2-supported catalysts, and that the state of Re was stable on Pt-Re/TiO2 (R) under the LT-WGS conditions. These results indicate that one of reasons for the superior catalytic activity of Pt-Re/TiO2 (R) catalyst is an increase in Pt dispersion. The stable Re acts as anchors for Pt particles, resulting in high Pt dispersion. On the other hand, for the ZrO2-supported catalysts, TEM micrographs showed that the Pt dispersion decreased by Re addition to Pt/ZrO2. XPS spectra indicated that the interaction between Re and support on Pt-Re/ZrO2 catalysts is stronger than that on Pt-Re/TiO2 (R), and that the redox reaction between Re4+ and Re7+ was repeated on Pt-Re/ZrO2 in the course of the LT-WGS reaction. These results suggested that the Re redox reaction significantly contributes to the high catalytic activity of the Pt-Re/ZrO2 catalyst, although Pt-Re/ZrO2 had lower Pt dispersion than Pt/ZrO2. Therefore, it was determined that the additive effect of Re on Pt dispersion and catalytic activity was largely affected by the state of Re. (c) 2006 Elsevier B.V. All rights reserved.
机译:Pt-Re / TiO2(R:金红石)和Pt-Re / ZrO2催化剂对低温下的水煤气变换反应(LT-WGS)具有优异的催化活性,通过TEM和XPS测量来表征,以检查Re在增强催化活性中的作用。对于TiO2(R)负载的催化剂,TEM显微照片显示,通过Pt / TiO2(R)添加Re,Pt分散度增加。 XPS光谱表明,在TiO2负载的催化剂上Pt和Re之间的电子相互作用比在ZrO2负载的催化剂上更强,并且在LT-WGS下Pt-Re / TiO2(R)上Re的状态稳定。条件。这些结果表明,Pt-Re / TiO2(R)催化剂具有优异催化活性的原因之一是Pt分散性的增加。稳定的Re充当Pt颗粒的锚定物,导致Pt分散度高。另一方面,对于ZrO 2负载的催化剂,TEM显微照片表明,通过向Pt / ZrO 2中添加Re,Pt的分散性降低。 XPS光谱表明Re与载体在Pt-Re / ZrO2催化剂上的相互作用强于Pt-Re / TiO2(R),并且Re4 +和Re7 +之间的氧化还原反应在Pt-Re / ZrO2上重复进行。 LT-WGS反应的过程。这些结果表明,尽管Pt-Re / ZrO2的Pt分散度低于Pt / ZrO2,但Re氧化还原反应显着促进了Pt-Re / ZrO2催化剂的高催化活性。因此,确定了Re对Pt分散性和催化活性的累加作用受Re状态的影响很大。 (c)2006 Elsevier B.V.保留所有权利。

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