Raney type copper-zinc-aluminium catalyst for water-gas shift reaction

A. Andreev *, V. Kafedjiiski, T. Halachev, B. Kunev, M. Kaltchev
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引用次数: 30

Abstract

The structure and the catalytic activity in the water-gas shift (WGS ) reaction of a Raney type copper-zinc-alummium catalyst has been studied. It has been established that after leaching of the alloy with alkali solution copper particles are formed, covered by a hydroxycarbonate film containing mainly a hydrotalcite like phase. Most probably this system is the precursor of the active sites, similar to the WGS catalysts obtained by coprecipitation. The Raney type catalysts manifested catalytic activity by an order of magnitude higher than that of the conventional coprecipitated catalysts. This could be explained by the formation of a complex catalytic system, containing a “polyelectrode” of a redox galvanic couple of copper ions, closed via the metal phase.

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水气变换反应用Raney型铜锌铝催化剂
研究了一种Raney型铜锌铝催化剂的结构及其在水气转换反应中的催化活性。结果表明,合金经碱溶液浸出后形成铜颗粒,并被一层主要含水滑石相的羟基碳酸盐膜所覆盖。该体系很可能是活性位点的前体,类似于共沉淀法得到的WGS催化剂。Raney型催化剂的催化活性比传统共沉淀催化剂高一个数量级。这可以通过形成一个复杂的催化系统来解释,该系统包含一个由铜离子氧化还原电偶组成的“多电极”,通过金属相闭合。
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