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Characterization of Feed Properties for Conceptual Process Design Involving Complex Mixtures, Such as Natural Extracts

机译:概念过程设计的饲料特性表征涉及复杂混合物,如自然提取物

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摘要

The number of products used as agro-chemicals, food additives, flavors, aromas, pharmaceuticals and nutraceuticals which are made by fermentation or extraction from plants has increased significantly. Despite this growth, initial predictions for a potential product purification process for these complex mixtures remains entirely experimentally based. The present work represents an initial study to demonstrate the benefits of a systematic approach. For process development of chemically well-studied systems model based process design methods are already available. Therefore the proposed approach focuses on a method for the efficient characterization of the physical properties of the key components. Once this is adequately defined, unit operations and their potential to separate the feed components can be modeled. The current state of research is discussed. Based on this evaluation the most efficient method for conceptual process development has been identified and further developed. The resulting methodology consists of model-based cost accounting accompanied by experimental model-parameter determination. The latter is carried out at in miniaturized laboratory-scale measurement cells for each unit operation using the complete original feed. The model-based modelparameter determination from these experiments is accompanied by a comprehensive error analysis. The experimental plan currently includes the determination of thermodynamic equilibrium conditions in the mixture directly from the raw material mixture. Transport kinetics and fluid dynamic parameters are first estimated from known correlations or preexisting knowledge. Later on these parameters are determined exactly in mini-plant experiments. Furthermore, biological and botanical-based guidelines are developed to identify thermodynamically favored basic operations. Finally, the developed approaches are successfully validated using two plant extracts. Firstly, it could be proven that the botanical pre-selection can reduce the experimental plan significantly. Secondly, it was shown that the experimental equilibrium data of the kinetics and fluid dynamics can have a significant impact on the separation costs. Therefore, detailed rigorous modeling approaches have to be chosen instead of short-cut methods in order to make any valid process development conclusions or to further optimize the system.
机译:用作农业化学品,食品添加剂,味道,香气,药物和营养素的产品数量显着增加了由发酵或促进植物提取。尽管这一增长,但这些复杂混合物的潜在产品净化过程的初始预测仍然是基于实验的。目前的工作代表了展示系统方法的好处的初步研究。对于基于化学良好的系统模型的工艺开发,已经可用了基于系统模型的工艺设计方法。因此,所提出的方法侧重于用于有效表征关键组件的物理性质的方法。一旦这是充分定义的,可以建模单位操作及其分离馈送组件的电位。讨论了当前的研究状态。基于该评估,已经确定并进一步发展了最有效的概念过程开发方法。由此产生的方法包括基于模型的成本核算,伴随着实验模型参数确定。后者在小型化实验室测量测量单元中进行,用于使用完整的原始饲料进行每个单元操作。这些实验的基于模型的模型参数测定伴随着综合误差分析。实验计划目前包括直接从原料混合物中测定混合物中的热力平衡条件。首先从已知的相关性或预先存在的知识估计运输动力学和流体动态参数。后来在这些参数上确定在迷你植物实验中。此外,开发了生物学和基于植物的指导方针以识别热力学最有利的基本操作。最后,使用两种植物提取物成功验证了发育方法。首先,可以证明植物预选可以显着降低实验计划。其次,显示动力学和流体动力学的实验性平衡数据可能对分离成本产生显着影响。因此,必须选择详细的严格建模方法而不是短切方法,以便进行任何有效的过程开发结论或进一步优化系统。

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