LAPSE:2023.3580
Published Article

LAPSE:2023.3580
Biofuel Production Using Cultivated Algae: Technologies, Economics, and Its Environmental Impacts
February 22, 2023
Abstract
The process of looking for alternative energy sources is driven by the increasing demand for energy and environmental contamination caused by using fossil fuels. Recent investigations reported the efficiency of microalgae for biofuel production due to its low cost of production, high speed of growth, and ability to grow in harsh environments. In addition, many microalgae are photosynthetic, consuming CO2 and solar light to grow in biomass and providing a promising bioenergy source. This review presents the recent advances in the application of microalgae for biofuel production. In addition, cultivation and harvesting systems and environmental factors that affect microalgae cultivation for biofuel production have also been discussed. Moreover, lipid extraction and conversion technologies to biofuel are presented. The mixotrophic cultivation strategy is promising as it combines the advantages of heterotrophy and autotrophy. Green harvesting methods such as using bio-coagulants and flocculants are promising technologies to reduce the cost of microalgal biomass production. In the future, more investigations into co-cultivation systems, new green harvesting methods, high lipids extraction methods, and the optimization of lipid extraction and converting processes should be implemented to increase the sustainability of microalgae application for biofuel production.
The process of looking for alternative energy sources is driven by the increasing demand for energy and environmental contamination caused by using fossil fuels. Recent investigations reported the efficiency of microalgae for biofuel production due to its low cost of production, high speed of growth, and ability to grow in harsh environments. In addition, many microalgae are photosynthetic, consuming CO2 and solar light to grow in biomass and providing a promising bioenergy source. This review presents the recent advances in the application of microalgae for biofuel production. In addition, cultivation and harvesting systems and environmental factors that affect microalgae cultivation for biofuel production have also been discussed. Moreover, lipid extraction and conversion technologies to biofuel are presented. The mixotrophic cultivation strategy is promising as it combines the advantages of heterotrophy and autotrophy. Green harvesting methods such as using bio-coagulants and flocculants are promising technologies to reduce the cost of microalgal biomass production. In the future, more investigations into co-cultivation systems, new green harvesting methods, high lipids extraction methods, and the optimization of lipid extraction and converting processes should be implemented to increase the sustainability of microalgae application for biofuel production.
Record ID
Keywords
biofuel, cultivation and harvesting, lipid extraction, microalgae, techno economic assessment
Subject
Suggested Citation
Alazaiza MYD, Albahnasawi A, Al Maskari T, Abujazar MSS, Bashir MJK, Nassani DE, Abu Amr SS. Biofuel Production Using Cultivated Algae: Technologies, Economics, and Its Environmental Impacts. (2023). LAPSE:2023.3580
Author Affiliations
Alazaiza MYD: Department of Civil and Environmental Engineering, College of Engineering, A’Sharqiyah University, Ibra 400, Oman [ORCID]
Albahnasawi A: Department of Environmental Engineering, Gebze Technical University, Kocaeli 41400, Turkey [ORCID]
Al Maskari T: Department of Civil and Environmental Engineering, College of Engineering, A’Sharqiyah University, Ibra 400, Oman
Abujazar MSS: Al-Aqsa Community Intermediate College, Al-Aqsa University, Gaza 4051, Palestine [ORCID]
Bashir MJK: Department of Environmental Engineering, Faculty of Engineering and Green Technology (FEGT), Universiti Tunku Abdul Rahman, Kampar 31900, Malaysia [ORCID]
Nassani DE: Department of Civil Engineering, Hasan Kalyoncu University, Gaziantep 27500, Turkey [ORCID]
Abu Amr SS: International College of Engineering and Management, Seeb 2511, Oman [ORCID]
Albahnasawi A: Department of Environmental Engineering, Gebze Technical University, Kocaeli 41400, Turkey [ORCID]
Al Maskari T: Department of Civil and Environmental Engineering, College of Engineering, A’Sharqiyah University, Ibra 400, Oman
Abujazar MSS: Al-Aqsa Community Intermediate College, Al-Aqsa University, Gaza 4051, Palestine [ORCID]
Bashir MJK: Department of Environmental Engineering, Faculty of Engineering and Green Technology (FEGT), Universiti Tunku Abdul Rahman, Kampar 31900, Malaysia [ORCID]
Nassani DE: Department of Civil Engineering, Hasan Kalyoncu University, Gaziantep 27500, Turkey [ORCID]
Abu Amr SS: International College of Engineering and Management, Seeb 2511, Oman [ORCID]
Journal Name
Energies
Volume
16
Issue
3
First Page
1316
Year
2023
Publication Date
2023-01-26
ISSN
1996-1073
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Original Submission
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PII: en16031316, Publication Type: Review
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LAPSE:2023.3580
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https://doi.org/10.3390/en16031316
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Feb 22, 2023
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