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@article{171834, author = {Narendra Kumar S and Shivandappa and Rohan J Reddy and Ranjan A R and Prasad C Goudar}, title = {Algae Bioreactor for CO2 Capture: An Integrated Approach for Carbon Sequestration}, journal = {International Journal of Innovative Research in Technology}, year = {2025}, volume = {11}, number = {8}, pages = {1689-1692}, issn = {2349-6002}, url = {https://ijirt.org/article?manuscript=171834}, abstract = {The rapid rise in atmospheric CO2 levels due to industrial activities has created an urgent need for innovative solutions to mitigate climate change. Algae bioreactors have emerged as a promising technology for CO2 capture, leveraging the photosynthetic potential of algae to convert CO2 into biomass. This paper explores the design, operational parameters, and effectiveness of algae bioreactors, focusing on photobioreactors (PBRs) as a preferred configuration. It highlights the role of various algal species in optimizing CO2 sequestration and biomass productivity, as well as the potential economic and environmental benefits of algae-based carbon capture. Our study shows that algae bioreactors can capture significant amounts of CO2 while producing valuable by-products like biofuels and animal feed. With continued advancements in reactor design and species selection, algae bioreactors can serve as a cornerstone technology in achieving a low-carbon economy.}, keywords = {Algae bioreactors, CO2 capture, Photobioreactors (PBRs), Biomass productivity}, month = {January}, }
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