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Insight into the catalytic mechanism of glycerol hydrogenolysis using basal spacing of hydrotalcite as a toolf

机译:深入了解甘油氢解的催化机理,利用水力钙岩作为工具F的基础间距

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摘要

Information on the catalytic mechanism is crucial for understanding heterogeneous catalysis of glycerol hydrogenolysis. In this work, we proposed a simple and effective method to study the catalytic mechanism of glycerol hydrogenolysis with Cu/Mg-Al mixed-oxide as catalyst. This method is based on the memory effect of the hydrotalcite-derived Mg-Al mixed-oxide and the tunable property of hydrotalcite interlayer distance. The experimental results showed that the basal spacing of hydrotalcite could work as an effective tool to reflect the relationship between desorption of products and reaction conditions. With this tool, the effect of H2 pressure on glycerol hydrogenolysis was elucidated. It was found that H2 pressure affected desorption and yield of products.
机译:有关催化机制的信息对于理解甘油氢解体的异质催化至关重要。 在这项工作中,我们提出了一种简单有效的方法,用于研究用Cu/mg-al混合氧化物作为催化剂研究甘油氢解的催化机制。 该方法基于水力钙化衍生的MG-AL混合氧化物的记忆效应和Hydrotalcite Interlayer距离的可调特性。 实验结果表明,水力钙岩的基础间距可以作为反映产物解吸与反应条件之间关系的有效工具。 使用该工具,阐明了H2压力对甘油氢解的影响。 发现H2压力影响了产物的解吸和产量。

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