The Influence of Elevated CO 2 Concentrations on the Growth of Various Microalgae Strains

The influence of elevated CO concentrations on the growth and viability of various microalgae strains was studied. , , , , and were tested. The cultivation of microalgae was carried out at constant CO concentrations (0.04, 3, 6, or 9%-sequentially from lower to higher concentrations), under constant...

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Published inPlants (Basel) Vol. 12; no. 13
Main Authors Chunzhuk, Elizaveta A, Grigorenko, Anatoly V, Kiseleva, Sophia V, Chernova, Nadezhda I, Ryndin, Kirill G, Kumar, Vinod, Vlaskin, Mikhail S
Format Journal Article
LanguageEnglish
Published Switzerland 28.06.2023
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Abstract The influence of elevated CO concentrations on the growth and viability of various microalgae strains was studied. , , , , and were tested. The cultivation of microalgae was carried out at constant CO concentrations (0.04, 3, 6, or 9%-sequentially from lower to higher concentrations), under constant (24 h·day ) illumination with an intensity of 74.3 µmol quanta·m ·s , and a constant temperature of 23.5 ± 0.5 °C. The optical density of the microalgae biomass, pH, and the chemical composition of the culture medium were measured. Microscopy (including the cytochemical microscopic method) was conducted to monitor the state of the microalgae. The highest biomass growth rate (0.37 g·L ·day ), among all experiments, was achieved for at CO = 3% and for at CO = 6 and 9%. The lowest growth rate (0.12 g·L ·day ) was achieved for at CO = 3 and 9%. The microscopy results showed the absence or a minimum number of dead cells of the strains under selected conditions. The ability to maintain the viability of cultures up to significant concentrations of CO = 9% was due to adaptation (gradual increase in CO concentrations in the experiments).
AbstractList The influence of elevated CO concentrations on the growth and viability of various microalgae strains was studied. , , , , and were tested. The cultivation of microalgae was carried out at constant CO concentrations (0.04, 3, 6, or 9%-sequentially from lower to higher concentrations), under constant (24 h·day ) illumination with an intensity of 74.3 µmol quanta·m ·s , and a constant temperature of 23.5 ± 0.5 °C. The optical density of the microalgae biomass, pH, and the chemical composition of the culture medium were measured. Microscopy (including the cytochemical microscopic method) was conducted to monitor the state of the microalgae. The highest biomass growth rate (0.37 g·L ·day ), among all experiments, was achieved for at CO = 3% and for at CO = 6 and 9%. The lowest growth rate (0.12 g·L ·day ) was achieved for at CO = 3 and 9%. The microscopy results showed the absence or a minimum number of dead cells of the strains under selected conditions. The ability to maintain the viability of cultures up to significant concentrations of CO = 9% was due to adaptation (gradual increase in CO concentrations in the experiments).
Author Vlaskin, Mikhail S
Kiseleva, Sophia V
Ryndin, Kirill G
Grigorenko, Anatoly V
Chernova, Nadezhda I
Kumar, Vinod
Chunzhuk, Elizaveta A
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  organization: Joint Institute for High Temperatures, Russian Academy of Sciences, 125412 Moscow, Russia
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Issue 13
Keywords high CO2 concentrations
Elliptochloris subsphaerica
Arthrospira platensis
Chlorella vulgaris
cyanobacteria
microalgae
microalgae cultivation
Chlorella ellipsoidea
CO2 capture
Gloeotila pulchra
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