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一类具有与生长相关产物的连续生物反应器非结构化模型的静态和动态行为

Static and dynamic behavior of a class of unstructured models of continuous bioreactors with growth associated product.

作者信息

Ajbar A, Fakeeha A H

机构信息

Department of Chemical Engineering, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia.

出版信息

Bioprocess Biosyst Eng. 2002 Apr;25(1):21-7. doi: 10.1007/s004490100254. Epub 2002 Feb 8.

Abstract

The static and dynamic behavior of a class of unstructured models of continuous bioprocesses, for which the product is growth associated, are analyzed using elementary concepts of singularity theory and continuation techniques. The class consists of models for which both the rates of utilization of limiting substrate and product formation are linearly proportional to the specific cell growth rate. The kinetic expressions are allowed to assume general forms of substrate and nonbiomass product. The steady-state analysis allows the derivation of analytical results and the construction of a useful picture in the models' parameter space delineating the different static behavior these models can predict, including unique steady states and bistability. The analysis of the dynamic behavior allows the derivation of general analytical conditions for the occurrence of periodic behavior in the models. It is also shown that the subclass of these models for which the specific cell growth rate expression is monotonic with respect to the nonbiomass product is unable to predict a stable oscillatory behavior regardless of the expression of the growth rate. These results illustrate the fundamental weakness of this class of unstructured models in predicting transient behavior in continuous cultures. The effect of kinetic and operating parameters on the stability characteristics of these models is also investigated.

摘要

使用奇点理论的基本概念和延拓技术,分析了一类连续生物过程的非结构化模型的静态和动态行为,这类模型的产物与生长相关。该类模型包括限制底物利用速率和产物形成速率均与比细胞生长速率成线性比例的模型。动力学表达式可以采用底物和非生物质产物的一般形式。稳态分析允许推导解析结果,并在模型的参数空间中构建一幅有用的图,描绘这些模型可以预测的不同静态行为,包括唯一稳态和双稳态。动态行为分析允许推导模型中出现周期性行为的一般解析条件。还表明,对于比细胞生长速率表达式相对于非生物质产物单调的这类模型的子类,无论生长速率的表达式如何,都无法预测稳定的振荡行为。这些结果说明了这类非结构化模型在预测连续培养中的瞬态行为方面的根本弱点。还研究了动力学和操作参数对这些模型稳定性特征的影响。

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