首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A New Approach to the Study of the Reactivity of Solid-Acid Catalysts:The Application of Constant Rate Thermal Analysis to the Desorption and Surface Reaction of Isopropylamine from NaY and HY Zeolites
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A New Approach to the Study of the Reactivity of Solid-Acid Catalysts:The Application of Constant Rate Thermal Analysis to the Desorption and Surface Reaction of Isopropylamine from NaY and HY Zeolites

机译:固体酸催化剂反应性研究的新方法:恒速热分析法在异丙基胺从NaY和HY分子筛的解吸和表面反应中的应用

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摘要

A new and potentially valuable appeoach to the study of the acidity and reactivity of the surfaces of solid acid materials is described.The technique uses a combination of constant rate thermal analysis(CRTA) with the rati jump technique(CRTA-RJ)for temperature programmed desorption(TPD) and reaction(TPR_x) CRTA,where the sample temperature is changed to force the rate of reaction to remain constant through a process,offers a number of advantages over conventional linear heating thermal methods by minimizing temterature and concentration gradients in the sample and reducing the effects of diffusion.CRTR and CRTR-RJ were applied to the PTD and TPR_x of isopropylamine from NaY zeolite and its acidic form, HY.Activation energies of both the physical desorption of the amine and the surface-catalyzed Hoffman elimination reaction were calculated as a function of surface coverage and the advantages and lmitations of the techniques are discussed .Comparisons are made with analogous TPD,experiments using conventional linear heating methods It is concluded that the TPR_x approach reflects the reactivity of strong acidic catalytic sites directly and so usefully complements base adsorption microcalorimetry in characterizing acid solid catalysts.
机译:描述了一种研究固体酸材料表面的酸度和反应性的潜在新方法。该技术结合了恒定速率热分析(CRTA)和比率跳跃技术(CRTA-RJ)来进行温度编程解吸(TPD)和反应(TPR_x)CRTA,其中改变样品温度以迫使反应速率在整个过程中保持恒定,通过最小化样品中的温度和浓度梯度,提供了优于常规线性加热热方法的许多优势将CRTR和CRTR-RJ应用于NaY沸石及其酸性形式HY的异丙胺的PTD和TPR_x。胺的物理脱附和表面催化的霍夫曼消除反应的活化能分别为计算了表面覆盖率的函数,并讨论了该技术的优点和缺点。与类似的TPD进行了比较,实验使用常规线性加热方法的分析结论:TPR_x方法直接反映了强酸性催化位点的反应性,因此在表征酸性固体催化剂时可有效地补充碱吸附微量量热法。

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