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一种用于预测莱茵衣藻在环形光生物反应器中一维光衰减的完全预测模型。

A fully predictive model for one-dimensional light attenuation by Chlamydomonas reinhardtii in a torus photobioreactor.

作者信息

Pottier L, Pruvost J, Deremetz J, Cornet J-F, Legrand J, Dussap C G

机构信息

GEPEA Laboratory, UMR-CNRS 6144, University of Nantes, Faculté des Sciences et des Techniques, 2 rue de la Houssinière, BP 92208, 44322 NANTES Cedex 3, France.

出版信息

Biotechnol Bioeng. 2005 Sep 5;91(5):569-82. doi: 10.1002/bit.20475.

Abstract

The light attenuation in a photobioreactor is determined using a fully predictive model. The optical properties were first calculated, using a data bank of the literature, from only the knowledge of pigments content, shape, and size distributions of cultivated cells which are a function of the physiology of the current species. The radiative properties of the biological turbid medium were then deduced using the exact Lorenz-Mie theory. This method is experimentally validated using a large-size integrating sphere photometer. The radiative properties are then used in a rectangular, one-dimensional two-flux model to predict radiant light attenuation in a photobioreactor, considering a quasi-collimated field of irradiance. Combination of this radiative model with the predictive determination of optical properties is finally validated by in situ measurement of attenuation profiles in a torus photobioreactor cultivating the microalgae Chlamydomonas reinhardtii, after a complete and proper characterization of the incident light flux provided by the experimental set-up.

摘要

使用完全预测模型来确定光生物反应器中的光衰减。首先,利用文献数据库,仅根据培养细胞的色素含量、形状和尺寸分布(这些是当前物种生理学的函数)来计算光学特性。然后,使用精确的洛伦兹 - 米氏理论推导生物混浊介质的辐射特性。该方法通过大型积分球光度计进行实验验证。接着,将辐射特性用于矩形一维双通量模型,以预测光生物反应器中的辐射光衰减,同时考虑准平行的辐照场。在对实验装置提供的入射光通量进行完整且恰当的表征之后,通过原位测量培养莱茵衣藻的环形光生物反应器中的衰减曲线,最终验证了该辐射模型与光学特性预测测定的结合。

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