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在光生物反应器中莱茵衣藻光合作用生长的动力学建模。

Kinetic modeling of the photosynthetic growth of Chlamydomonas reinhardtii in a photobioreactor.

机构信息

Nantes Université, CNRS, GEPEA UMR-CNRS 6144, Boulevard de l'Université, CRTT-BP 406, 44602 Saint-Nazaire Cedex, France.

出版信息

Biotechnol Prog. 2012 May-Jun;28(3):681-92. doi: 10.1002/btpr.1545. Epub 2012 May 2.

Abstract

The aim of this study was to establish and validate a model for the photosynthetic growth of Chlamydomonas reinhardtii in photobioreactors (PBRs). The proposed model is based on an energetic analysis of the excitation energy transfer in the photosynthesis apparatus (the Z-scheme for photosynthesis). This approach has already been validated in cyanobacteria (Arthorspira platensis) and is extended here to predict the volumetric biomass productivity for the microalga C. reinhardtii in autotrophic conditions, taking into consideration the two metabolic processes taking place in this eukaryotic microorganism, namely photosynthesis and respiration. The kinetic growth model obtained was then coupled to a radiative transfer model (the two-flux model) to determine the local kinetics, and thereby the volumetric biomass productivity, in a torus PBR. The model was found to predict PBR performances accurately for a broad set of operating conditions, including both light-limited and kinetic growth regimes, with a variance of less than 10% between experimental results and simulations.

摘要

本研究旨在建立和验证一种用于光生物反应器(PBR)中莱茵衣藻光合作用的模型。所提出的模型基于光合作用装置中激发能量转移的能量分析(光合作用的 Z 方案)。这种方法已经在蓝细菌(Arthorspira platensis)中得到验证,并在此基础上扩展到预测在自养条件下微藻 C. reinhardtii 的体积生物量生产力,同时考虑到发生在这种真核微生物中的两种代谢过程,即光合作用和呼吸作用。然后将获得的动力学生长模型与辐射传递模型(两流模型)耦合,以确定在环形容器 PBR 中的局部动力学,从而确定体积生物量生产力。该模型被发现可以准确地预测广泛的操作条件下的 PBR 性能,包括光限制和动力学生长阶段,实验结果和模拟之间的差异小于 10%。

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