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Design of hybrid distillation/melt crystallisation processes for separation of close boiling mixtures

机译:混合蒸馏/熔体结晶工艺设计,用于分离高沸点混合物

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摘要

Hybrid separations combining distillations and crystallisations have a significant potential for process intensification. To address the large number of degrees of freedom in the design of hybrid separations, a three-step approach is utilised. However, it can only be applied if all parameters for the rigorous modelling of crystallisation and cost functions are known a priori, which is often not the case. In this paper, we propose a four-step design method which can be applied in early process development stages when not all model parameters are available. In the first step, different process variants are generated. In the second step, the variants are evaluated using rigorous models, wherein the unknown model parameters are varied to quantify their influence on the process performance. If hybrid separations appear to be compatible, experiments are performed to determine the unknown parameters in the third step. In the last step, an optimisation is performed to find the optimal process, when necessary in dependence of unknown cost parameters. The developed tools and the feasibility of the approach are illustrated with the separation of a binary mixture of long-chain isomeric aldehydes.
机译:结合蒸馏和结晶的混合分离具有工艺强化的巨大潜力。为了解决杂交分离设计中的大量自由度,采用了三步法。但是,只有在先验已知用于结晶和成本函数的严格建模的所有参数(通常不是这种情况)时,才能应用该方法。在本文中,我们提出了一种四步设计方法,该方法可在并非所有模型参数都可用的情况下应用于早期过程开发阶段。第一步,生成不同的过程变量。在第二步中,使用严格的模型评估变体,其中,未知的模型参数会发生变化,以量化其对过程性能的影响。如果杂交分离看起来是兼容的,则在第三步中进行实验以确定未知参数。在最后一步中,在必要时根据未知成本参数执行优化以找到最佳过程。分离出长链异构醛的二元混合物说明了该方法的开发工具和可行性。

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