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Density-dependent kinetics models for a simple description of complex phenomena in macroscopic mass-balance modeling of bioreactors

机译:密度依赖的动力学模型,用于简单描述生物反应器宏观质量平衡模型中的复杂现象

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From experiments originally proposed by Ardity et al. [Arditi, R., Perrin, N., Saiah, H., 1991. Functional responses and heterogeneities: an experimental test with cladocerans. Oikos 60, 69-75] in the field of fundamental ecology, this paper derives conditions under which mass balance ratio-dependent kinetics models are more appropriate (in a sense to be specified in the sequel) than substrate-dependent kinetics models to macroscopically describe bioprocesses with attached biomass. From literature results, it is also suggested that the use of Contois growth functions should be preferred to substrate-dependent kinetics when macroscopically modeling an immobilized-biomass bioreactor. The "robustness" of this result, rather based on a qualitative reasoning, is investigated in simulation and a number of fundamental properties of ratio-dependent models are highlighted. Furthermore, it is shown that ratio-dependent models are well suited to describe macroscopically bioreactors where the diffusion phenomenon is obviously one of the most important limiting factor. (c) 2006 Elsevier B.V. All rights reserved.
机译:根据Ardity等人最初提出的实验。 [Arditi,R.,Perrin,N.,Saiah,H.,1991。功能性反应和异质性:用枝角类动物进行的实验测试。 [Oikos 60,69-75]在基础生态学领域,本文推导了这样一种条件,在这种条件下,质量平衡比率依赖的动力学模型比基质依赖的动力学模型更适合宏观地描述(在后继中要指定)附有生物量的生物过程。从文献结果来看,还建议在宏观上对固定的生物质生物反应器进行建模时,应优先使用Contois生长功能,而不是依赖于底物的动力学。在仿真中研究了此结果的“稳健性”,而不是基于定性推理,并且突出了许多基于比率的模型的基本属性。此外,表明比例依赖模型非常适合描述宏观生物反应器,其中扩散现象显然是最重要的限制因素之一。 (c)2006 Elsevier B.V.保留所有权利。

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