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Immersion calorimetry as a tool to evaluate the catalytic performance of titanosilicate materials in the epoxidation of cyclohexene

机译:浸没量热法作为评估钛硅酸盐材料在环己烯环氧化反应中催化性能的工具

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摘要

Different types of titanosilicates are synthesized, structurally characterized, and subsequently catalytically tested in the liquid-phase epoxidation of cyclohexene. The performance of three types of combined zeolitic/mesoporous materials is compared with that of widely studied Ti-grafted-MCM-41 molecular sieve and the TS-1 microporous titanosilicate. The catalytic test results are correlated with the structural characteristics of the different catalysts. Moreover, for the first time, immersion calorimetry with the same substrate molecule as in the catalytic test reaction is applied as an extra means to interpret the catalytic results. A good correlation between catalytic performance and immersion calorimetry results is found. This work points out that the combination of catalytic testing and immersion calorimetry can lead to important insights into the influence of the materials structural characteristics on catalysis. Moreover, the potential of using immersion calorimetry as a screening tool for catalysts in epoxidation reactions is shown.
机译:合成了不同类型的钛硅酸盐,对其进行了结构表征,然后在环己烯的液相环氧化中进行了催化测试。将三种类型的沸石/介孔混合材料的性能与广泛研究的Ti接枝MCM-41分子筛和TS-1微孔钛硅酸盐的性能进行了比较。催化测试结果与不同催化剂的结构特征相关。此外,首次将具有与催化测试反应中相同的底物分子的浸没量热法用作解释催化结果的额外手段。发现催化性能与浸没量热法结果之间具有良好的相关性。这项工作指出,将催化测试与浸没量热法相结合可以对材料结构特征对催化的影响产生重要的见解。此外,显示了将浸没量热法用作环氧化反应中催化剂的筛选工具的潜力。

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