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Synthesised sulfonic solid acid catalysts for liquid phase reactions

机译:用于液相反应的合成磺酸固体酸催化剂

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摘要

The move to use heterogeneous solid acid catalysts as new, cleaner, renewable catalysts for liquid phase reactions is at the forefront of scientific research, with the focus on the ability to tailor and improve the physical and chemical properties of the catalysts in order to tailor their acidity to catalytic activity for specific liquid phase reactions. The aim of this project was to determine the role of the support in imparting acidity and catalytic activity in liquid phase reactions to three different types of supported solid acid catalyst; polystyrene, silica and a fluorinated hydrocarbon polymer. For the sulfonic acids supported on silica, two main synthesis routes (grafted and co-condensed) with the use of two alternative tethers (propyl, phenyl and also an additional non acidic tether) were compared. Of the synthesised materials, structural properties were characterised and compared using several techniques. Nitrogen adsorption was used in order to ascertain the pore size and distribution, X-ray diffraction to determine the long range order, elemental analysis to determine the relative sulfur content and X-ray phototelectron spectroscopy to analyse the environment of the sulfur in order to establish successful acidification. Surface acidities of all three supported sulfonic acids were better characterised and compared using ammonia adsorption calorimetry. The extent of the adsorption and molar enthalpies of ammonia adsorption (ΔHadsn) were interpreted in terms of abundance, accessibility and strength of surface acid sites. Catalytic activities were measured and compared using the isomerization of α-pinene liquid phase reaction. In brief, the main findings of this project indicate that the commercially available fluorinated polymer Nafion® resin demonstrated the highest acid strength and much higher specific catalytic activities compared to the other supported sulfonic acids. The acid strengths on polymeric and silica supports were similar, with poor catalytic activities. The routes used in order to synthesise, characterise and acidify the supported sulfonic acids were successful.
机译:将非均相固体酸催化剂用作液相反应的新型,更清洁,可再生催化剂的举动一直是科学研究的前沿,其重点是能够调整和改善催化剂的物理和化学性质,以调整其性能。酸度对特定液相反应的催化活性。该项目的目的是确定载体在液相反应中赋予三种不同类型的负载型固体酸催化剂在赋予酸性和催化活性方面的作用。聚苯乙烯,二氧化硅和氟化烃聚合物。对于负载在二氧化硅上的磺酸,比较了两种主要的合成路线(接枝和共缩合),并使用了两种替代的系链(丙基,苯基以及另一种非酸性系链)。在合成的材料中,使用几种技术对结构性能进行了表征和比较。为了确定孔径和分布,使用了氮吸附,通过X射线衍射确定了长程有序,使用元素分析确定了相对硫含量,并通过X射线光电子能谱分析了硫的环境,从而确定了成功酸化。使用氨吸附量热法可以更好地表征和比较所有三种负载型磺酸的表面酸度。氨的吸附程度和摩尔焓焓(ΔHadsn)用表面酸位的丰度,可及性和强度来解释。使用α-pine烯液相反应的异构化来测量和比较催化活性。简而言之,该项目的主要发现表明,与其他负载的磺酸相比,市售的氟化聚合物Nafion®树脂具有最高的酸强度和更高的比催化活性。聚合物和二氧化硅载体上的酸强度相似,催化活性差。用于合成,表征和酸化负载的磺酸的途径是成功的。

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  • 作者

    Davison Andrea Dianne;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 English
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