Industrial CO2 Capture by Algae: A Review and Recent Advances
Промышленный захват CO2 с помощью водорослей: обзор и последние достижения
2022-03-23
SCID: 54.1/sw38647m
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Chlorella sp.algae cultivation for CO2 capturemicroalgae as third-generation biofuelsupercritical gasification of algaevertical tubular bioreactors
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Abstract (AI)
The problem of global warming and the emission of greenhouse gases is already directly affecting the world’s energy. In the future, the impact of CO2 emissions on the world economy will constantly grow. In this paper, we review the available literature sources on the benefits of using algae cultivation for CO2 capture to decrease CO2 emission. CO2 emission accounts for about 77% of all greenhouse gases, and the calculation of greenhouse gas emissions is 56% of all CO2 imports. As a result of the study of various types of algae, it was concluded that Chlorella sp. is the best at capturing CO2. Various methods of cultivating microalgae were also considered and it was found that vertical tubular bioreactors are emerging. Moreover, for energy purposes, thermochemical methods for processing algae that absorb CO2 from flue gases were considered. Of all five types of thermochemical processes for producing synthesis gas, the most preferred method is the method of supercritical gasification of algae. In addition, attention is paid to the drying and flocculation of biofuels. Several different experiments were also reviewed on the use of flue gases through the cultivation of algae biomass. Based on this literature review, it can be concluded that microalgae are a third generation biofuel. With the absorption of greenhouse gases, the growth of microalgae cultures is accelerated. When a large mass of microalgae appears, it can be used for energy purposes. In the results, we present a plan for further studies of microalgae cultivation, a thermodynamic analysis of gasification and pyrolysis, and a comparison of the results with other biofuels and other algae cultures.
Key Findings
1
Algae cultivation can be used for industrial CO2 capture to decrease CO2 emissions, addressing a major greenhouse gas source.
2
Among studied algae, Chlorella sp. was concluded to be the most effective at capturing CO2.
3
CO2 accounts for about 77% of all greenhouse gases, and greenhouse gas emissions calculations attribute 56% to CO2 imports (as reported).
4
Cultivating microalgae with flue gases has been experimentally demonstrated in several studies reviewed.
5
Drying and flocculation are important processing steps for converting algal biomass into biofuels and are emphasized in the review.
6
For energy recovery from CO2-absorbing algae biomass, thermochemical processing is considered, with five processes evaluated and supercritical gasification preferred.
7
Microalgae are characterized as a third-generation biofuel: greenhouse gas absorption accelerates culture growth, enabling biomass use for energy.
8
The paper presents plans for further studies including microalgae cultivation, thermodynamic analysis of gasification and pyrolysis, and comparisons with other biofuels and algae.
9
Vertical tubular bioreactors are identified as an emerging preferred method for microalgae cultivation.
Research Object
Microalgae cultivation systems (with focus on Chlorella sp.) used for industrial CO2 capture and subsequent biofuel production
Research Subject
Effectiveness and methods of CO2 capture by microalgae (including cultivation methods, bioreactor designs, use of flue gases), and downstream thermochemical processing (supercritical gasification, pyrolysis) and fuel preparation (drying, flocculation) for energy applications
Publication Details
Publication Date
2022-03-23
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