首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Investigation of the Cu-Zr-Y oxides activity in the carbon black catalytic oxidation by differential thermal analysis and temperature programmed reduction
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Investigation of the Cu-Zr-Y oxides activity in the carbon black catalytic oxidation by differential thermal analysis and temperature programmed reduction

机译:差热分析和程序升温还原研究炭黑催化氧化过程中Cu-Zr-Y氧化物的活性

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摘要

Different copper/zirconium-yttrium catalysts have been tested in carbon black oxidation reaction. Supported mainly on differential thermal analysis and temperature programmed reduction, two different rnechanisms have been proposed to explain the catalytic results. In the absence of copper, it has been shown that Zr3+ ions and associated anionic vacancies are responsible to the catalytic enhancement observed in the mixed oxides, oxygen species being activated on these sites. Among mixed zirconia-yttria solids, ZrO2-5 mol%Y2O3 is the most active catalyst. Copper impregnation on these oxides leads to the formation of different copper species. Small particles of CuO in low interaction with the support, induce a catalytic improvement due to the highest reducibility of these species. Moreover, in order to be more efficient, CuO species should have some interactions with the support, since impregnated samples are more active than the simple mechanical mixtures. (c) 2006 Elsevier B.V. All rights reserved.
机译:已经在炭黑氧化反应中测试了不同的铜/锆-钇催化剂。主要在差热分析和程序升温还原的支持下,提出了两种不同的机理来解释催化结果。在不存在铜的情况下,已显示Zr3 +离子和相关的阴离子空位是混合氧化物中所观察到的催化增强的原因,这些位置上的氧被活化。在混合的氧化锆-氧化钇固体中,ZrO2-5​​ mol%Y2O3是活性最高的催化剂。将铜浸渍在这些氧化物上会导致形成不同的铜物质。与这些载体的低相互作用下的CuO小颗粒由于这些物种的最高还原性而引起了催化改进。此外,为了提高效率,CuO物种应与支持物发生一些相互作用,因为浸渍的样品比简单的机械混合物更具活性。 (c)2006 Elsevier B.V.保留所有权利。

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