Microalgal Carbon Dioxide (CO2) Capture and Utilization from the European Union Perspective

被引:19
作者
Zielinski, Marcin [1 ]
Debowski, Marcin [1 ]
Kazimierowicz, Joanna [2 ]
Swica, Izabela [1 ]
机构
[1] Univ Warmia & Mazury, Fac Geoengn, Dept Environm Engn, PL-10720 Olsztyn, Poland
[2] Bialystok Tech Univ, Fac Civil Engn & Environm Sci, Dept Water Supply & Sewage Syst, PL-15351 Bialystok, Poland
关键词
carbon dioxide emission; CO2; capture; biosequestration; microalgae; long-term utilization; phycoremediation; fit for 55; FLUE-GAS; CHLORELLA SP; GROWTH; SEQUESTRATION; CULTIVATION; REMOVAL; BIOMASS; PHOTOBIOREACTORS; FERMENTATION; BIOREACTORS;
D O I
10.3390/en16031446
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The increasing concentration of anthropogenic CO2 in the atmosphere is causing a global environmental crisis, forcing significant reductions in emissions. Among the existing CO2 capture technologies, microalgae-guided sequestration is seen as one of the more promising and sustainable solutions. The present review article compares CO2 emissions in the EU with other global economies, and outlines EU's climate policy together with current and proposed EU climate regulations. Furthermore, it summarizes the current state of knowledge on controlled microalgal cultures, indicates the importance of CO2 phycoremediation methods, and assesses the importance of microalgae-based systems for long-term storage and utilization of CO2. It also outlines how far microalgae technologies within the EU have developed on the quantitative and technological levels, together with prospects for future development. The literature overview has shown that large-scale take-up of technological solutions for the production and use of microalgal biomass is hampered by economic, technological, and legal barriers. Unsuitable climate conditions are an additional impediment, forcing operators to implement technologies that maintain appropriate temperature and lighting conditions in photobioreactors, considerably driving up the associated investment and operational costs.
引用
收藏
页数:27
相关论文
共 165 条
[1]   Global economic crisis, energy use, CO2 emissions, and policy roadmap amid COVID-19 [J].
Aktar, Asikha ;
Alam, Md. Mahmudul ;
Al-Amin, Abul Quasem .
SUSTAINABLE PRODUCTION AND CONSUMPTION, 2021, 26 (26) :770-781
[2]   Cultivating Microalgae in Desert Conditions: Evaluation of the Effect of Light-Temperature Summer Conditions on the Growth and Metabolism of Nannochloropsis QU130 [J].
Al Jabri, Hareb ;
Taleb, Aumaya ;
Touchard, Raphaelle ;
Saadaoui, Imen ;
Goetz, Vincent ;
Pruvost, Jeremy .
APPLIED SCIENCES-BASEL, 2021, 11 (09)
[3]  
Al-Dailami Anas, 2022, Journal of Physics: Conference Series, V2259, DOI 10.1088/1742-6596/2259/1/012014
[4]   Investigating algae for CO2 capture and accumulation and simultaneous production of biomass for biodiesel production [J].
Alami, Abdul Hai ;
Alasad, Shamma ;
Ali, Mennatalah ;
Alshamsi, Maitha .
SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 759
[5]  
[Anonymous], 2020, The EU Blue Economy Report 2020
[7]   Current Status of the Algae Production Industry in Europe: An Emerging Sector of the Blue Bioeconomy [J].
Araujo, Rita ;
Calderon, Fatima Vazquez ;
Lopez, Javier Sanchez ;
Azevedo, Isabel Costa ;
Bruhn, Annette ;
Fluch, Silvia ;
Tasende, Manuel Garcia ;
Ghaderiardakani, Fatemeh ;
Ilmjarv, Tanel ;
Laurans, Martial ;
Mac Monagail, Micheal ;
Mangini, Silvio ;
Peteiro, Cesar ;
Rebours, Celine ;
Stefansson, Tryggvi ;
Ullmann, Joerg .
FRONTIERS IN MARINE SCIENCE, 2021, 7
[8]   Selection and adaptation of microalgae to growth in 100% unfiltered coal-fired flue gas [J].
Aslam, Ambreen ;
Thomas-Hall, Skye R. ;
Mughal, Tahira Aziz ;
Schenk, Peer M. .
BIORESOURCE TECHNOLOGY, 2017, 233 :271-283
[9]   Algae: Study of Edible and Biologically Active Fractions, Their Properties and Applications [J].
Babich, Olga ;
Sukhikh, Stanislav ;
Larina, Viktoria ;
Kalashnikova, Olga ;
Kashirskikh, Egor ;
Prosekov, Alexander ;
Noskova, Svetlana ;
Ivanova, Svetlana ;
Fendri, Imen ;
Smaoui, Slim ;
Abdelkafi, Slim ;
Michaud, Philippe ;
Dolganyuk, Vyacheslav .
PLANTS-BASEL, 2022, 11 (06)
[10]   Potential for large-scale CO2 removal via enhanced rock weathering with croplands [J].
Beerling, David J. ;
Kantzas, Euripides P. ;
Lomas, Mark R. ;
Wade, Peter ;
Eufrasio, Rafael M. ;
Renforth, Phil ;
Sarkar, Binoy ;
Andrews, M. Grace ;
James, Rachael H. ;
Pearce, Christopher R. ;
Mercure, Jean-Francois ;
Pollitt, Hector ;
Holden, Philip B. ;
Edwards, Neil R. ;
Khanna, Madhu ;
Koh, Lenny ;
Quegan, Shaun ;
Pidgeon, Nick F. ;
Janssens, Ivan A. ;
Hansen, James ;
Banwart, Steven A. .
NATURE, 2020, 583 (7815) :242-+