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Modeling a Protein Foam Fractionation Process

机译:模拟蛋白质泡沫分离过程

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A simple staged model for the protein foam fractionation process is proposed in this article. This simplified model does not detail the complex foam structure and gas-liquid hydrodynamics in the foam phase but, rather, is built on the conventional theoretical stage concept considering upward bubbles with entrained liquid and downward liquid (drainage) as counter-current flows. To simulate the protein concentration distribution in the liquid along the column by the model, the bubble size and liquid hold-up with respect to the position must be known, as well as the adsorption isotherm of the protein being considered. The model is evaluated for one stage by data from the semibatch foam fractionation of egg albumin and data from the continuous foam fractionation of bovine serum albumin. The effect of two significant variables (superficial gas velocity and feed protein concentration) on enrichment is well predicted by the model, especially for continuous operation and semibatch operation when initial concentration is high.
机译:本文提出了蛋白质泡沫分离过程的简单分阶段模型。这个简化的模型没有详细说明泡沫相中复杂的泡沫结构和气液流体动力学,而是建立在常规理论阶段的概念基础上,考虑了带有夹带液体的向上气泡和向下流动的液体(排水)为逆流。为了通过该模型模拟蛋白质沿色谱柱在液体中的浓度分布,必须知道气泡的大小和相对于位置的液体滞留率,以及要考虑的蛋白质的吸附等温线。通过来自蛋清蛋白的半批泡沫分离数据和来自牛血清白蛋白的连续泡沫分离数据,对该模型进行了一个阶段的评估。该模型很好地预测了两个重要变量(表观气体流速和进料蛋白质浓度)对富集的影响,尤其是对于初始浓度较高时的连续操作和半间歇操作。

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