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Gold catalysed selective oxidation of alcohols in supercritical carbon dioxide

机译:金在超临界二氧化碳中催化醇的选择性氧化

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The oxidation of benzyl alcohol to benzaldehyde over different supported gold catalysts in supercritical carbon dioxide has been investigated in a high-pressure batch reactor. Only molecular oxygen was used as oxidant and no base was needed. Different supports and preparation methods for the catalysts were tested and parameters like reaction temperature, pressure and molar ratios of the components were varied to study the catalytic behaviour. Gold colloids deposited on a titania support (1%Au/TiO2) yielded a conversion of 16.0% after 3 h and a high selectivity to benzaldehyde of 99% under single-phase conditions. The reaction rate was significantly higher than in a corresponding “solvent-free” reaction without CO2. Even higher rates were found when a CO2-expanded phase was present. Monitoring of the oxidation in a high-pressure view cell via infrared transmission spectroscopy unravelled a slowdown of the reaction rate above 15% conversion. In addition, 1-octanol and geraniol were oxidised as well under similar conditions, yielding conversions of 4% and 10%, respectively, with selectivities towards octanal and geranial of 90% and 30%. Thus, the combined application of gold-based catalysts and supercritical CO2 offers an interesting alternative to the known methods of alcohol oxidation.
机译:在高压间歇反应器中,研究了在超临界二氧化碳中不同负载的金催化剂上苯甲醇氧化为苯甲醛的情况。仅将分子氧用作氧化剂,不需要碱。测试了催化剂的不同载体和制备方法,并改变了反应温度,压力和组分的摩尔比等参数,以研究催化剂的行为。沉积在二氧化钛载体(1%Au / TiO2 )上的金胶体在3小时后的转化率为16.0%,在单相条件下对苯甲醛的选择性高达99%。反应速率明显高于相应的无CO 2的“无溶剂”反应。当存在二氧化碳膨胀相时,发现的比率更高。通过红外透射光谱对高压观察池中的氧化进行监测,揭示了反应速率在15%转化率以上的降低。另外,在相同条件下也将1-辛醇和香叶醇氧化,分别得到4%和10%的转化率,对辛烷和香叶醛的选择性为90%和30%。因此,结合使用金基催化剂和超临界CO2 可为已知的醇氧化方法提供有趣的替代方法。

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