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Development and Optimization of a Single Column Analog Model for a Multi-Column Counter-Current Solvent Gradient Purification Process

机译:多柱逆流溶剂梯度净化过程的单柱模拟模型的开发与优化

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This contribution presents a modeling and optimization method for multi-column counter-current purification (MCSGP) processes. The model is based on conventional column models and by using the symmetric and cyclic steady state characteristics of the process a single column analog model was developed. The model have been used for dynamic optimization of the MCSGP process. The optimization was based on a simultaneous method where the control and state variables were discretized using a direct and local collocation method on finite elements in the temporal dimension and a finite volume weighted essentially non-oscillatory (WENO) scheme in the spatial dimension. The resulting nonlinear program (NLP) were solved using an interior point method. The case study presented shows that the zero-order hold elution trajectories, developed for single column batch operation, can be extended to semi-continuous multi-column chromatography with product recycling. The optimization results is composed of a set of operating conditions where the product was upgraded to 95% purity with 99% process yield.
机译:该贡献介绍了多列逆流净化(MCSGP)过程的建模和优化方法。该模型基于传统的列模型,并且通过使用对称和循环稳态特性,开发了单列模拟模型。该模型已被用于MCSGP过程的动态优化。优化基于同时方法,其中使用直接和局部搭配方法离散化控制和状态变量在时间尺寸中的有限元件上以及空间尺寸中基本上非振荡(Weno)方案的有限体积加权。使用内点法解决了所得到的非线性程序(NLP)。提出的案例研究表明,为单柱批量操作开发的零阶保持洗脱轨迹可以扩展到半连续多柱色谱,与产品回收。优化结果由一组操作条件组成,其中产品升高至95%纯度,加工产量为99%。

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