Publication detail

Numerical simulations of mass transfer prediction in a photobioreactor

REBEJ, M. VONDÁL, J. JUŘENA, T. BRUMMER, V. JEGLA, Z. NAĎ, M.

Original Title

Numerical simulations of mass transfer prediction in a photobioreactor

Type

journal article in Scopus

Language

English

Original Abstract

The paper deals with the possibility of using flue gas as a nutrient source for microalgae cultivation in a bubble column photobioreactor. The experiments performed on a vertical tubular photobioreactor determined the concentrations of the flue gas species that pass from the flue gas into the cultivation medium. The flue gas used for experiments was a gas mixture of different pollutants, e.g. SOx, NOx, or CO2, with a composition typical for waste-to-energy facilities. The paper is supplementary to the laboratory experiments. The objective of the multiphase CFD analysis is to develop the numerical model for mass transfer predictions in photobioreactors. The model employs the Henry’s law for interphase equilibrium and the penetration model for the mass transfer coefficient.

Keywords

Photobioreactor;Multiphase fluid flow;Mass transfer;CFD;Bubble diameter

Authors

REBEJ, M.; VONDÁL, J.; JUŘENA, T.; BRUMMER, V.; JEGLA, Z.; NAĎ, M.

Released

5. 6. 2022

Publisher

AIDIC Servizi Srl

Location

Milan, Italy

ISBN

978-88-95608-91-4

Book

Chemical engineering transactions

Edition

93

ISBN

2283-9216

Periodical

Chemical Engineering Transactions

Year of study

93

Number

1

State

Republic of Italy

Pages from

127

Pages to

132

Pages count

6

URL

BibTex

@article{BUT178282,
  author="Miroslav {Rebej} and Jiří {Vondál} and Tomáš {Juřena} and Vladimír {Brummer} and Zdeněk {Jegla} and Martin {Naď}",
  title="Numerical simulations of mass transfer prediction in a photobioreactor",
  journal="Chemical Engineering Transactions",
  year="2022",
  volume="93",
  number="1",
  pages="127--132",
  doi="10.3303/CET2293022",
  issn="2283-9216",
  url="https://www.cetjournal.it/index.php/cet/article/view/CET2293022"
}