Microalgae to bioenergy production: Recent advances, influencing parameters, utilization of wastewater – A critical review
Fossil fuel limitations and their influence on climate change through atmospheric greenhouse gas emissions have made the excessive use of fossil fuels widely recognized as unsustainable. The high lipid content, carbon-neutral nature and potential as a biofuel source have made microalgae a subject of...
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Published in | The Science of the total environment Vol. 946; p. 174230 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
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Elsevier B.V
10.10.2024
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Abstract | Fossil fuel limitations and their influence on climate change through atmospheric greenhouse gas emissions have made the excessive use of fossil fuels widely recognized as unsustainable. The high lipid content, carbon-neutral nature and potential as a biofuel source have made microalgae a subject of global study. Microalgae are a promising supply of biomass for third-generation biofuels production since they are renewable. They have the potential to produce significant amounts of biofuel and are considered a sustainable alternative to non-renewable energy sources. Microalgae are currently incapable to synthesize algal biofuel on an extensive basis in a sustainable manner, despite their significance in the global production of biofuels. Wastewater contains nutrients (both organic and inorganic) which is essential for the development of microalgae. Microalgae and wastewater can be combined to remediate waste effectively. Wastewater of various kinds such as industrial, agricultural, domestic, and municipal can be used as a substrate for microalgal growth. This process helps reduce carbon dioxide emissions and makes the production of biofuels more cost-effective. This critical review provides a detailed analysis of the utilization of wastewater as a growth medium for microalgal – biofuel production. The review also highlights potential future strategies to improve the commercial production of biofuels from microalgae.
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•Microalgae are photosynthetic microorganisms having abundance reservoir of carbohydrates, proteins and lipids.•Integrated microalgae cultivation with wastewater treatment is a sustainable and promising approach for biofuel generation.•Biohydrogen, biodiesel, bioelectricity, biogas, bioethanol are produced from microalgae via. different techniques.•Two-stage hybrid microalgae cultivation systems offer enhanced biomass and thus, better resource recovery.•Zero-waste idea concept is a solution for huge wastewater generation due to urbanization. |
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AbstractList | Fossil fuel limitations and their influence on climate change through atmospheric greenhouse gas emissions have made the excessive use of fossil fuels widely recognized as unsustainable. The high lipid content, carbon-neutral nature and potential as a biofuel source have made microalgae a subject of global study. Microalgae are a promising supply of biomass for third-generation biofuels production since they are renewable. They have the potential to produce significant amounts of biofuel and are considered a sustainable alternative to non-renewable energy sources. Microalgae are currently incapable to synthesize algal biofuel on an extensive basis in a sustainable manner, despite their significance in the global production of biofuels. Wastewater contains nutrients (both organic and inorganic) which is essential for the development of microalgae. Microalgae and wastewater can be combined to remediate waste effectively. Wastewater of various kinds such as industrial, agricultural, domestic, and municipal can be used as a substrate for microalgal growth. This process helps reduce carbon dioxide emissions and makes the production of biofuels more cost-effective. This critical review provides a detailed analysis of the utilization of wastewater as a growth medium for microalgal - biofuel production. The review also highlights potential future strategies to improve the commercial production of biofuels from microalgae.Fossil fuel limitations and their influence on climate change through atmospheric greenhouse gas emissions have made the excessive use of fossil fuels widely recognized as unsustainable. The high lipid content, carbon-neutral nature and potential as a biofuel source have made microalgae a subject of global study. Microalgae are a promising supply of biomass for third-generation biofuels production since they are renewable. They have the potential to produce significant amounts of biofuel and are considered a sustainable alternative to non-renewable energy sources. Microalgae are currently incapable to synthesize algal biofuel on an extensive basis in a sustainable manner, despite their significance in the global production of biofuels. Wastewater contains nutrients (both organic and inorganic) which is essential for the development of microalgae. Microalgae and wastewater can be combined to remediate waste effectively. Wastewater of various kinds such as industrial, agricultural, domestic, and municipal can be used as a substrate for microalgal growth. This process helps reduce carbon dioxide emissions and makes the production of biofuels more cost-effective. This critical review provides a detailed analysis of the utilization of wastewater as a growth medium for microalgal - biofuel production. The review also highlights potential future strategies to improve the commercial production of biofuels from microalgae. Fossil fuel limitations and their influence on climate change through atmospheric greenhouse gas emissions have made the excessive use of fossil fuels widely recognized as unsustainable. The high lipid content, carbon-neutral nature and potential as a biofuel source have made microalgae a subject of global study. Microalgae are a promising supply of biomass for third-generation biofuels production since they are renewable. They have the potential to produce significant amounts of biofuel and are considered a sustainable alternative to non-renewable energy sources. Microalgae are currently incapable to synthesize algal biofuel on an extensive basis in a sustainable manner, despite their significance in the global production of biofuels. Wastewater contains nutrients (both organic and inorganic) which is essential for the development of microalgae. Microalgae and wastewater can be combined to remediate waste effectively. Wastewater of various kinds such as industrial, agricultural, domestic, and municipal can be used as a substrate for microalgal growth. This process helps reduce carbon dioxide emissions and makes the production of biofuels more cost-effective. This critical review provides a detailed analysis of the utilization of wastewater as a growth medium for microalgal - biofuel production. The review also highlights potential future strategies to improve the commercial production of biofuels from microalgae. Fossil fuel limitations and their influence on climate change through atmospheric greenhouse gas emissions have made the excessive use of fossil fuels widely recognized as unsustainable. The high lipid content, carbon-neutral nature and potential as a biofuel source have made microalgae a subject of global study. Microalgae are a promising supply of biomass for third-generation biofuels production since they are renewable. They have the potential to produce significant amounts of biofuel and are considered a sustainable alternative to non-renewable energy sources. Microalgae are currently incapable to synthesize algal biofuel on an extensive basis in a sustainable manner, despite their significance in the global production of biofuels. Wastewater contains nutrients (both organic and inorganic) which is essential for the development of microalgae. Microalgae and wastewater can be combined to remediate waste effectively. Wastewater of various kinds such as industrial, agricultural, domestic, and municipal can be used as a substrate for microalgal growth. This process helps reduce carbon dioxide emissions and makes the production of biofuels more cost-effective. This critical review provides a detailed analysis of the utilization of wastewater as a growth medium for microalgal – biofuel production. The review also highlights potential future strategies to improve the commercial production of biofuels from microalgae. [Display omitted] •Microalgae are photosynthetic microorganisms having abundance reservoir of carbohydrates, proteins and lipids.•Integrated microalgae cultivation with wastewater treatment is a sustainable and promising approach for biofuel generation.•Biohydrogen, biodiesel, bioelectricity, biogas, bioethanol are produced from microalgae via. different techniques.•Two-stage hybrid microalgae cultivation systems offer enhanced biomass and thus, better resource recovery.•Zero-waste idea concept is a solution for huge wastewater generation due to urbanization. |
ArticleNumber | 174230 |
Author | Thondi Rajan, Angelin Swetha Muthusamy, Govarthanan Alagarsamy, Arun Ponnuchamy, Kumar Bora, Abhispa |
Author_xml | – sequence: 1 givenname: Abhispa surname: Bora fullname: Bora, Abhispa organization: Bioenergy and Bioremediation Laboratory, Department of Microbiology, Alagappa University, Karaikudi 630003, Tamil Nadu, India – sequence: 2 givenname: Angelin Swetha surname: Thondi Rajan fullname: Thondi Rajan, Angelin Swetha organization: Bioenergy and Bioremediation Laboratory, Department of Microbiology, Alagappa University, Karaikudi 630003, Tamil Nadu, India – sequence: 3 givenname: Kumar surname: Ponnuchamy fullname: Ponnuchamy, Kumar organization: Department of Animal Health and Management, Alagappa University, Karaikudi 630003, Tamil Nadu, India – sequence: 4 givenname: Govarthanan surname: Muthusamy fullname: Muthusamy, Govarthanan organization: Department of Environmental Engineering, Kyungpook National University, 41566 Daegu, Republic of Korea – sequence: 5 givenname: Arun surname: Alagarsamy fullname: Alagarsamy, Arun email: arunalacha@gmail.com organization: Bioenergy and Bioremediation Laboratory, Department of Microbiology, Alagappa University, Karaikudi 630003, Tamil Nadu, India |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/38942321$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_jece_2024_114266 crossref_primary_10_1016_j_jece_2025_115347 crossref_primary_10_1016_j_jwpe_2025_107249 crossref_primary_10_1016_j_seta_2025_104202 crossref_primary_10_1016_j_nxsust_2025_100120 crossref_primary_10_1016_j_watres_2025_123216 crossref_primary_10_1016_j_jwpe_2024_106506 crossref_primary_10_1016_j_rser_2025_115552 crossref_primary_10_1016_j_renene_2024_121593 crossref_primary_10_1002_cben_202400035 crossref_primary_10_1016_j_ijhydene_2024_10_327 crossref_primary_10_3390_pr12122936 crossref_primary_10_3390_phycology4030028 crossref_primary_10_3390_su162310565 |
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Keywords | Microalgae-based biofuel Hybrid cultivation system Microalgal biomass Biorefinery Photoheterotrophic Photobioreactor |
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