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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Combination of Rigorous and Statistical Modeling for Process Development of Plant-Based Extractions Based on Mass Balances and Biological Aspects
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Combination of Rigorous and Statistical Modeling for Process Development of Plant-Based Extractions Based on Mass Balances and Biological Aspects

机译:基于质量平衡和生物学方面的严格和统计建模相结合的植物提取工艺开发

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摘要

A rigorous model supported by botanical investigations has been developed to predict percolation results. Botanical investigations provide needed modeling parameters like pore size, porosity, or target compound distributions over the particle. After determining the desorption isotherm with maceration experiments at different solvent-feed ratios, the model is validated with short residence time percolation experiments. With the aid of this validated model, percolation experiments with long residence times can be predicted and different process scenarios calculated. A combination of design of experiments and rigorous modeling together with standard equipment and experimental model parameter determination provides a fast and robust experimental design on the one hand and the precondition for a process parameter data-based learning curve on the basis of rigorous modeling in the mid- or long-term on the other hand.
机译:已经开发了由植物研究支持的严格模型,以预测渗滤结果。植物研究提供了所需的建模参数,例如孔径,孔隙率或目标化合物在颗粒上的分布。用浸渍实验在不同溶剂进料比下确定解吸等温线后,用短停留时间渗滤实验验证该模型。借助这个经过验证的模型,可以预测停留时间长的渗滤实验,并计算出不同的工艺方案。将实验设计和严格建模与标准设备和实验模型参数确定相结合,一方面提供了快速而强大的实验设计,另一方面是在中期严格建模的基础上基于过程参数数据的学习曲线的前提-或长期而言。

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