Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.
Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.
N Biotechnol. 2014 Jun 25;31(4):324-34. doi: 10.1016/j.nbt.2013.11.007. Epub 2013 Dec 9.
Polyhydroxyalkanoate (PHA) production from waste streams using microbial enrichment cultures is a promising option for cost price reduction of this biopolymer. For proper understanding and successful optimization of the process, a consistent mechanistic model for PHA conversion by microbial enrichment cultures is needed. However, there is still a lack of mechanistic expressions describing the dynamics of the feast-famine process. The scope of this article is to provide an overview of the current models, investigate points of improvement, and contribute concepts for creation of a generalized model with more predictive value for the feast-famine process. Based on experimental data available in literature we have proposed model improvements for (i) modeling mixed substrates uptake, (ii) growth in the feast phase, (iii) switching between feast and famine phase, (iv) PHA degradation and (v) modeling the accumulation phase. Finally, we provide an example of a simple uniform model. Herewith we aim to give an impulse to the establishment of a generalized model.
利用微生物富集培养从废物流中生产聚羟基烷酸酯 (PHA) 是降低这种生物聚合物成本的一种很有前途的选择。为了正确理解和成功优化该过程,需要有一个用于微生物富集培养物转化 PHA 的一致的机理模型。然而,仍然缺乏描述 feast-famine 过程动力学的机理表达式。本文的目的是提供当前模型的概述,研究改进点,并为创建具有更高 feast-famine 过程预测价值的广义模型提供概念。基于文献中可用的实验数据,我们提出了对以下方面的模型改进:(i)混合底物摄取的建模,(ii) feast 阶段的生长,(iii) feast 和 famine 阶段之间的切换,(iv)PHA 降解和(v)积累阶段的建模。最后,我们提供了一个简单统一模型的示例。借此,我们旨在为建立一个广义模型提供动力。