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首页> 外文期刊>Green chemistry >Reductive amination of furfural to furfurylamine using aqueous ammonia solution and molecular hydrogen: an environmentally friendly approach
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Reductive amination of furfural to furfurylamine using aqueous ammonia solution and molecular hydrogen: an environmentally friendly approach

机译:使用氨水溶液和分子氢将糠醛还原胺化为糠胺:一种环境友好的方法

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摘要

A simple and highly efficient method was developed for the transformation of furfural (a biomass derived aldehyde) to furfurylamine by reductive amination using an aqueous solution of ammonia and molecular hydrogen as an amine source and a reducing agent, respectively. By choosing a suitable catalyst, such as Rh/Al2O3, and reaction conditions, a very high selectivity of furfurylamine (similar to 92%) can be achieved within the reaction time of 2 h at 80 degrees C. A detailed analysis of the reaction system sheds some light on the reaction pathway and provides an understanding about each elementary step. The reaction was believed to proceed via an imine pathway although no such intermediate was detected because of the highly reactive nature. Optimization of different reaction parameters such as hydrogen pressure, temperature and substrate/ammonia mole ratio is shown to be critical to achieve high selectivity of furfurylamine. Time-dependent reaction profiles suggested that a Schiff base type intermediate was in the detectable range, which offers indirect evidence of the formation of imine. Competitive hydrogenation and amination of an aldehyde group were strongly dictated by the nature of the metal used. The studied protocol represents an environmentally benign process for amine synthesis, which can be effectively extended to the other aldehydes also. The studied catalyst could be recycled successfully without any significant loss of catalytic activity.
机译:开发了一种简单高效的方法,通过分别使用氨和分子氢的水溶液作为胺源和还原剂进行还原胺化,将糠醛(生物质衍生的醛)转化为糠胺。通过选择合适的催化剂(例如Rh / Al2O3)和反应条件,可以在80摄氏度下2小时的反应时间内实现非常高的糠胺选择性(大约为92%)。阐明了反应途径,并提供了对每个基本步骤的理解。尽管由于高反应性而未检测到这种中间体,但据信该反应是通过亚胺途径进行的。已表明优化不同反应参数(例如氢气压力,温度和底物/氨摩尔比)对于实现糠胺的高选择性至关重要。时间依赖性反应谱表明,席夫碱型中间体在可检测范围内,这提供了亚胺形成的间接证据。竞争性的氢化和醛基的胺化强烈取决于所用金属的性质。研究的方案代表了一种环境友好的胺合成方法,该方法也可以有效地扩展到其他醛类。所研究的催化剂可以成功地回收利用,而不会显着降低催化活性。

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