Atmospheric Carbon Sequestration Using Microalgae

This article outlines biotechnological methods that can help reduce atmospheric and industrial carbon dioxide emissions through the use of microalgae. A general description of microalgae was provided, and the most promising species for microalgal biotechnology were identified. The metabolic process...

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Main Authors: D. M. Glazunova, P. Yu. Galitskaya, S. Yu. Selivanovskaya
Format: Article
Language:English
Published: Kazan Federal University 2024-03-01
Series:Učënye Zapiski Kazanskogo Universiteta. Seriâ Estestvennye Nauki
Subjects:
Online Access:https://uzakuesc.elpub.ru/jour/article/view/69
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author D. M. Glazunova
P. Yu. Galitskaya
S. Yu. Selivanovskaya
author_facet D. M. Glazunova
P. Yu. Galitskaya
S. Yu. Selivanovskaya
author_sort D. M. Glazunova
collection DOAJ
description This article outlines biotechnological methods that can help reduce atmospheric and industrial carbon dioxide emissions through the use of microalgae. A general description of microalgae was provided, and the most promising species for microalgal biotechnology were identified. The metabolic process by which microalgae capture and degrade carbon dioxide was described. The microalgae-based biotechnological systems and devices available today were analyzed. The key factors that need to be considered for the effective and successful use of microalgae were highlighted. Different products obtained from microalgal biomass after atmospheric carbon dioxide sequestration were overviewed.
first_indexed 2024-04-24T22:59:11Z
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spelling doaj.art-787372a3544949928f427244e9db9a172024-03-17T16:27:33ZengKazan Federal UniversityUčënye Zapiski Kazanskogo Universiteta. Seriâ Estestvennye Nauki2542-064X2500-218X2024-03-0116618212510.26907/2542-064X.2024.1.82-12550Atmospheric Carbon Sequestration Using MicroalgaeD. M. Glazunova0P. Yu. Galitskaya1S. Yu. Selivanovskaya2Kazan Federal UniversityKazan Federal UniversityKazan Federal UniversityThis article outlines biotechnological methods that can help reduce atmospheric and industrial carbon dioxide emissions through the use of microalgae. A general description of microalgae was provided, and the most promising species for microalgal biotechnology were identified. The metabolic process by which microalgae capture and degrade carbon dioxide was described. The microalgae-based biotechnological systems and devices available today were analyzed. The key factors that need to be considered for the effective and successful use of microalgae were highlighted. Different products obtained from microalgal biomass after atmospheric carbon dioxide sequestration were overviewed.https://uzakuesc.elpub.ru/jour/article/view/69carbon dioxidecarbon sequestrationmicroalgaemicroalgae biomassbiotechnological facilities for growing microalgae
spellingShingle D. M. Glazunova
P. Yu. Galitskaya
S. Yu. Selivanovskaya
Atmospheric Carbon Sequestration Using Microalgae
Učënye Zapiski Kazanskogo Universiteta. Seriâ Estestvennye Nauki
carbon dioxide
carbon sequestration
microalgae
microalgae biomass
biotechnological facilities for growing microalgae
title Atmospheric Carbon Sequestration Using Microalgae
title_full Atmospheric Carbon Sequestration Using Microalgae
title_fullStr Atmospheric Carbon Sequestration Using Microalgae
title_full_unstemmed Atmospheric Carbon Sequestration Using Microalgae
title_short Atmospheric Carbon Sequestration Using Microalgae
title_sort atmospheric carbon sequestration using microalgae
topic carbon dioxide
carbon sequestration
microalgae
microalgae biomass
biotechnological facilities for growing microalgae
url https://uzakuesc.elpub.ru/jour/article/view/69
work_keys_str_mv AT dmglazunova atmosphericcarbonsequestrationusingmicroalgae
AT pyugalitskaya atmosphericcarbonsequestrationusingmicroalgae
AT syuselivanovskaya atmosphericcarbonsequestrationusingmicroalgae