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Modelling of a biomass supercritical CO2 extraction process in a packed bed column. Simulator for academic learning purposes.

机译:在填充床塔中对生物质超临界CO2萃取过程进行建模。用于学术学习的模拟器。

摘要

In this work a comprehensive study on the modelling of a supercritical CO2 extraction process in a packed bed column was conducted. The aim was to develop a user-friendly Excel interface able to adjust the extraction yields and to simulate the dynamic concentration profiles inside the column. This free software is a useful tool for learning purposes. The model comprises non-stationary mass balances for the recovered compounds in both phases (solid and supercritical CO2). These mass balances generate a set of partial differential equations, solved by discretisation dividing the length of the column in several finite elements, where the orthogonal collocation method was individually applied. The resultant set of ordinary differential equations was solved using 8th Runge-Kutta’s method. The model was tested by reproducing the extraction of two biomass samples: sesame seeds and coffee beans. These samples were specifically selected to demonstrate the feasibility of reproducing processes when the mass transfer limitation is very different. Thus, for the sesame seeds case study, the extraction process was controlled by both the external mass transfer and oil solubility, since the seeds should be grinded. If the seed is not grinded enough, mass transfer control changes at the end of the extraction and as a consequence the process is limited by internal diffusion. On the contrary, for coffee grains, the internal diffusion is always the main mass transfer limitation as the whole grain is required. Regarding solubility, a Henry’s linear relation between solid and liquid concentration was assumed. In addition, the internal solid and liquid profiles were calculated to make easier to follow the process and to analyse how they are modified depending on the mass transfer restriction.
机译:在这项工作中,对填充床塔中超临界CO2萃取过程的建模进行了全面研究。目的是开发一个用户友好的Excel界面,该界面能够调整萃取率并模拟色谱柱内部的动态浓度曲线。该免费软件是用于学习目的的有用工具。该模型包括两个阶段(固体和超临界CO2)中回收的化合物的非平稳质量平衡。这些质量平衡生成了一组偏微分方程,通过离散化将列的长度分成几个有限元来解决,在其中分别应用了正交配置方法。使用第八种Runge-Kutta方法求解所得的一组常微分方程组。通过复制两种生物质样品的提取物(芝麻和咖啡豆)对模型进行了测试。这些样品经过专门选择,以证明当传质限制非常不同时,进行复制过程的可行性。因此,对于芝麻种子案例研究,提取过程受外部传质和油溶性的控制,因为应将种子磨碎。如果种子未充分研磨,则传质控制会在提取结束时发生变化,结果,该过程将受到内部扩散的限制。相反,对于咖啡谷物,由于需要整个谷物,内部扩散始终是主要的传质限制。关于溶解度,假定固体和液体浓度之间的亨利线性关系。此外,计算内部的固体和液体轮廓可以更容易地遵循该过程,并可以根据传质限制分析它们的修饰方式。

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