vix.ing · top · new · best · stats · spec

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

2005/07/15 by L. Pottier, Laurence Pottier, Jérémy Pruvost +8 · 13 citations
Energy · Environmental Science · #Algal biology and biofuel production #Aquatic Ecosystems and Phytoplankton Dynamics #Physiological and biochemical adaptations

paper · 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.

Citations

Cited by

Related