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Predictive Modelling of Phase-Transfer Catalyst Systems for Improved and Innovative Design

机译:改进和创新设计相转移催化剂系统的预测建模

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Phase-transfer catalyst (PTC) systems contain two immiscible liquid phases with a heterogeneous PTC transferring active ion from one phase to the other for converting the reactant to the desired product, and in the process generating the inactive ion. This type of reacting systems is receiving increasing attention as a novel organic synthesis option due to its flexible and easier operation, higher production yield, and ability to eliminate expensive solvents, although, not eliminating the use of solvents. New mathematical models of the PTC system, which includes physical and chemical equilibrium, reaction mechanism and unit operation has been developed. In the developed model, the PTC system is divided into four sub-systems of aqueous-organic solvent partition, inorganic salt in aqueous phase, PTC in aqueous phase, and PTC in aqueous phase. Each subsystem requires an appropriate thermodynamic model to predict the partition and equilibrium of the involved species. A new predictive electrolyte model (e-KT-UNIFAC) that has the capability to predict the partition and equilibrium of systems containing novel PTCs has been embedded into the reactor model. With this option, the application range has been significantly widened, making it feasible to identify new and innovative biphasic reaction options. In this paper, the predictive qualities of the new model together with the improvements in the predicted design and operation of reaction with PTC systems are highlighted. Also, applications of problem-specific models for selecting improved design alternatives based on different design targets are presented.
机译:相转移催化剂(PTC)系统包含两个不混溶的液相与非均相PTC从一个相转移活性离子与其它的反应物转化为所需的产物,并在此过程产生非活动离子。这种类型的反应系统的越来越受到关注作为一种新型的有机合成的选择,由于它的柔性和更简单的操作,更高的产率,以及消除昂贵的溶剂能力,虽然,在不清除使用溶剂。所述PTC系统,其中包括物理和化学平衡,反应机理和单元操作的新的数学模型已经研制成功。在发达模型中,PTC系统被分成四个在水相中水 - 有机溶剂的分区,无机盐的子系统,PTC在水相中,在PTC水相。每个子系统需要合适的热力学模型来预测所涉及的物质的分区和平衡。具有预测分区和含有新颖的PTC系统平衡的能力的新的预测模型电解质(E-KT-UNIFAC)已被嵌入到该反应器模型。使用此选项,应用范围已扩大显著,使之可行,以确定新的和创新两相反应的选项。在本文中,与所预测的设计和与PTC系统反应的操作的改进的新模式一起的预测质量被突出显示。另外,对于选择基于不同的设计目标,改进设计方案的问题,具体型号的应用介绍。

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