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Diffusion and Reaction in Nanostructured Sulfated Zirconias: A Transient TAP Study

机译:纳米结构硫化锆中的扩散和反应:瞬态TAP研究。

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摘要

Transient TAP (temporal analysis of products) measurements have been performed for the first time on nanostructured hierarchical sulfated zirconias prepared by a template-assisted route. The newly designed catalytic materials showed an unexpected high catalytic activity in the n-butane isomerization. The tailored pore systems had a significant influence on the diffusion properties of reactant and product molecules thus influencing the microkinetics. The calculation of heats of adsorption from temperature dependent TAP measurements was further improved by the implementation of two different adsorption sites representing the complex sorption of alkanes on sulfated zirconias more adequately compared to the common one-centre model.
机译:首次对通过模板辅助路线制备的纳米结构分层硫酸化氧化锆进行了瞬态TAP(产品的时间分析)测量。新设计的催化材料在正丁烷异构化过程中显示出出乎意料的高催化活性。定制的孔系统对反应物和产物分子的扩散性能具有重大影响,从而影响微动力学。通过实现两个不同的吸附位点,与常规的一中心模型相比,烷烃在硫酸盐氧化锆上的复杂吸附更加充分,进一步改善了由温度依赖性TAP测量得出的吸附热的计算。

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