Bioconversion of Glycerol into Biofuels—Opportunities and Challenges
Rising pollutants and greenhouse gas emissions from fossil fuels are serious environmental concerns that led to a tremendous focus of scientific research. The use of renewable resources as feedstock to produce fuels could help preserve the environment and offer economic and social sustainability. Th...
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Published in | Bioenergy research Vol. 15; no. 1; pp. 46 - 61 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
New York
Springer US
01.03.2022
Springer Springer Nature B.V |
Subjects | |
Online Access | Get full text |
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Abstract | Rising pollutants and greenhouse gas emissions from fossil fuels are serious environmental concerns that led to a tremendous focus of scientific research. The use of renewable resources as feedstock to produce fuels could help preserve the environment and offer economic and social sustainability. This preceded the development of alternative fuels such as biodiesel, and bioethanol. Over the last decade, the substantial expansion of biodiesel production indicates stoichiometrically increased crude glycerol co-production. Due to the surplus availability of the crude glycerol (as it does not find any potential application for complete utilisation), its market value has fallen and is even seen as a waste stream instead of a lucrative co-product. While high-purity glycerol is used in cosmetics, food, paints, and pharmaceutical industries for medicines, crude glycerol is an attractive organic carbon substrate to produce value-added products through microbial fermentation or physicochemical processing. The review discussed the recent developments in glycerol to produce fuels such as bioethanol, hydrogen, and methanol. Besides, it highlights the opportunities and challenges in utilising crude/waste glycerol generated from the biodiesel industry. |
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AbstractList | Rising pollutants and greenhouse gas emissions from fossil fuels are serious environmental concerns that led to a tremendous focus of scientific research. The use of renewable resources as feedstock to produce fuels could help preserve the environment and offer economic and social sustainability. This preceded the development of alternative fuels such as biodiesel, and bioethanol. Over the last decade, the substantial expansion of biodiesel production indicates stoichiometrically increased crude glycerol co-production. Due to the surplus availability of the crude glycerol (as it does not find any potential application for complete utilisation), its market value has fallen and is even seen as a waste stream instead of a lucrative co-product. While high-purity glycerol is used in cosmetics, food, paints, and pharmaceutical industries for medicines, crude glycerol is an attractive organic carbon substrate to produce value-added products through microbial fermentation or physicochemical processing. The review discussed the recent developments in glycerol to produce fuels such as bioethanol, hydrogen, and methanol. Besides, it highlights the opportunities and challenges in utilising crude/waste glycerol generated from the biodiesel industry. Abstract Rising pollutants and greenhouse gas emissions from fossil fuels are serious environmental concerns that led to a tremendous focus of scientific research. The use of renewable resources as feedstock to produce fuels could help preserve the environment and offer economic and social sustainability. This preceded the development of alternative fuels such as biodiesel, and bioethanol. Over the last decade, the substantial expansion of biodiesel production indicates stoichiometrically increased crude glycerol co-production. Due to the surplus availability of the crude glycerol (as it does not find any potential application for complete utilisation), its market value has fallen and is even seen as a waste stream instead of a lucrative co-product. While high-purity glycerol is used in cosmetics, food, paints, and pharmaceutical industries for medicines, crude glycerol is an attractive organic carbon substrate to produce value-added products through microbial fermentation or physicochemical processing. The review discussed the recent developments in glycerol to produce fuels such as bioethanol, hydrogen, and methanol. Besides, it highlights the opportunities and challenges in utilising crude/waste glycerol generated from the biodiesel industry. |
Audience | Academic |
Author | Chilakamarry, Chaitanya Reddy Sakinah, A. M. Mimi Sirohi, Ranjna Pandey, Ashok Reddy, Venugopal Jayarama Zularisam, A. W. Khilji, Irshad Ahamad |
Author_xml | – sequence: 1 givenname: Chaitanya Reddy surname: Chilakamarry fullname: Chilakamarry, Chaitanya Reddy organization: Faculty of Chemical and Process Engineering Technology, Universiti Malaysia Pahang – sequence: 2 givenname: A. M. Mimi surname: Sakinah fullname: Sakinah, A. M. Mimi email: mimi@ump.edu.my organization: Faculty of Chemical and Process Engineering Technology, Universiti Malaysia Pahang – sequence: 3 givenname: A. W. surname: Zularisam fullname: Zularisam, A. W. organization: Faculty of Civil and Earth Resources Engineering Technology, Universiti Malaysia Pahang – sequence: 4 givenname: Ranjna surname: Sirohi fullname: Sirohi, Ranjna organization: Department of Chemical Biological Engineering, Korea University, Centre for Energy and Environmental Sustainability – sequence: 5 givenname: Irshad Ahamad surname: Khilji fullname: Khilji, Irshad Ahamad organization: Faculty of Manufacturing and Mechatronics Engineering Technology, Universiti Malaysia Pahang – sequence: 6 givenname: Venugopal Jayarama surname: Reddy fullname: Reddy, Venugopal Jayarama organization: Faculty of Industrial Sciences & Technology, Universiti Malaysia Pahang – sequence: 7 givenname: Ashok orcidid: 0000-0003-1626-3529 surname: Pandey fullname: Pandey, Ashok email: ashok.pandey1@iitr.res.in, ashokpandey1956@gmail.com organization: Centre for Energy and Environmental Sustainability, Centre for Innovation and Translational Research, CSIR-Indian Institute of Toxicology Research |
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SubjectTerms | Air pollution Alternative fuels Bioconversion Biodiesel fuels Biofuels Biomass energy Biomedical and Life Sciences Carbon sources Cosmetics Diesel Emissions Energy minerals Ethanol Fermentation Food industry Fossil fuels Fuel industry Glycerin Glycerol Greenhouse gases Hydrogen Life Sciences Market value Microorganisms Organic carbon Pharmaceutical industry Plant Breeding/Biotechnology Plant Ecology Plant Genetics and Genomics Plant Sciences Pollutants Renewable resources Social sustainability Substrates Sustainable development Sustainable yield Waste management Waste streams Wood Science & Technology |
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Title | Bioconversion of Glycerol into Biofuels—Opportunities and Challenges |
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