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Stoichio-kinetic modeling and optimization of chemical synthesis: Application to the aldolic condensation of furfural on acetone

机译:化学动力学的化学动力学模型和优化:糠醛在丙酮上的醛缩醛反应中的应用

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摘要

The condensation reaction of furfural (F) on acetone (Ac) gives a high added value product, the 4-(2-furyl)-3-buten-2-one (FAc), used as aromaudin alcohol free drinks, ice, candies, gelatines and other products of current life. This synthesis valorises the residues of sugar cane treatment sinceudfurfural is obtained by hydrolysis of sugar cane bagasse followed by vapor training extraction. In the face of numerous and complex reactions involved in this synthesis, it is very complicated to define the kinetic laws from exact stoichiometry. A solution allowing to cope the problemudconsists in identifying an appropriate stoichiometric model. It does not attempt to represent exactly all the reaction mechanisms, but proposes a mathematical support to integrate available knowledge on the transformation. The aim of this work is the determination of stoichiometric andudkinetic models of the condensation reaction of furfural on acetone. Concentrations of reagents and products are determined by gas and liquid chromatography. Concentration profiles obtained at different temperatures are used to identify kinetic parameters. The model is then used for theudoptimization of the production of FAc. The interest of such tool is also shown for the scale up of laboratory reactor to a large scale. The anticipation of the reaction behaviour in large scale is crucial especially when the reactor presents important limitations of thermal exchange capacity.
机译:糠醛(F)在丙酮(Ac)上的缩合反应产生高附加值的产物4-(2-呋喃基)-3-丁烯-2-酮(FAc),用作无香,无丁醇的饮料,冰,糖果,明胶等当前产品。该合成使甘蔗处理的残留物增值,因为通过将甘蔗渣水解后再进行蒸气训练提取得到了糠醛。面对该合成过程涉及的众多复杂反应,从精确的化学计量学定义动力学定律非常复杂。允许解决该问题的解决方案在识别合适的化学计量模型中不一致。它并没有试图表示所有的反应机制,而是提出了一种数学支持,以整合有关转换的可用知识。这项工作的目的是确定糠醛在丙酮上的缩合反应的化学计量和动力学模型。试剂和产物的浓度通过气相色谱和液相色谱法确定。在不同温度下获得的浓度曲线用于鉴定动力学参数。然后将该模型用于FAc生产的不优化。还显示出这种工具对于将实验室反应器大规模放大的兴趣。大规模预测反应行为至关重要,特别是当反应器存在热交换容量的重要限制时。

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