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Analyzing and Modeling of Photobioreactors by Combining First Principles of Physiology and Hydrodynamics
Biotechnology and Bioengineering
  • Hu Ping Luo
  • Muthanna H. Al-Dahhan, Missouri University of Science and Technology
Abstract

Mixing in Photobioreactors is Known to Enhance Biomass Productivity Considerably, and Flow Dynamics Play a Significant Role in the Reactor's Performance, as They Determine the Mixing and the Cells' Movement. in This Work We Focus on Analyzing the Effects of Mixing and Flow Dynamics on the Photobioreactor Performance. based on Hydrodynamic Findings from the CARPT(Computer Automated Radioactive Particle Tracking) Technique, a Possible Mechanism for the Interaction between the Mixing and the Physiology of Photosynthesis is Presented, and the Effects of Flow Dynamics on Light Availability and Light Intensity Fluctuation Are Discussed and Quantitatively Characterized. Furthermore, a Dynamic Modeling Approach is Developed for Photobioreactor Performance Evaluation, Which Integrates First Principles of Photosynthesis, Hydrodynamics, and Irradiance Distribution within the Reactor. the Results Demonstrate the Reliability and the Possible Applicability of This Approach to Commercially Interesting Microalgae/cyanobacteria Culture Systems. © 2004 Wiley Periodicals, Inc.

Department(s)
Chemical and Biochemical Engineering
Keywords and Phrases
  • Airlift column,
  • CARPT,
  • Dynamic simulation,
  • Hydrodynamics,
  • Photobioreactor
Document Type
Article - Journal
Document Version
Citation
File Type
text
Language(s)
English
Rights
© 2023 Wiley, All rights reserved.
Publication Date
2-20-2004
Publication Date
20 Feb 2004
PubMed ID
14755556
Citation Information
Hu Ping Luo and Muthanna H. Al-Dahhan. "Analyzing and Modeling of Photobioreactors by Combining First Principles of Physiology and Hydrodynamics" Biotechnology and Bioengineering Vol. 85 Iss. 4 (2004) p. 382 - 393 ISSN: 0006-3592
Available at: http://works.bepress.com/muthanna-al-dahhan/254/