Theory of turbid microalgae cultures.

J Theor Biol

Université Côte d' Azur, Inria, INRA, CNRS, UPMC Univ Paris 06, BIOCORE team, France; LOV-UPMC Sorbonne-CNRS, UMR 7093, Station Zoologique, B.P. 28, Villefranche-sur-mer 06234, France. Electronic address:

Published: November 2018

AI Article Synopsis

  • Microalgae can grow in either closed or open photobioreactors (PBR), but light intensity decreases as it travels through the culture affecting growth rates.
  • Different factors like incident light intensity, PBR design, microalgae density, and turbidity influence the average growth rate, especially in vertical cylindrical PBRs.
  • The paper explores the implications of these factors, including potential growth limitations due to light and how PBR geometry impacts microalgae productivity.

Article Abstract

Microalgae can be cultivated in closed or open photobioreactors (PBR). In these systems, light rapidly decreases as it passes through the culture due to the turbidity of the medium. Thus, microalgae experiment different light intensities depending on their position in the medium. In this paper, we study theoretically how the growth rate of microalgae is affected by different factors; incident light intensity, form of the PBR, microalgae population density, turbidity of non-microalgae components, and light path-length of the reactor. We show that for different types of PBR the average growth rate is completely determined by the incident light intensity and the optical depth. In the case of vertical cylindrical PBRs illuminated from above (e.g. race-way or panel-type reactors), we described (and we prove under general assumptions) in details the dependence of the AGR on the aforementioned factors. Finally, we discuss some implications of our analysis; the occurrence of the Allee effect, if light ostensibly limits or inhibits the growth rate in outdoor cultures, and how the geometry of the PBR affects microalgae growth rate and productivity.

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Source
http://dx.doi.org/10.1016/j.jtbi.2018.07.016DOI Listing

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