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Microalgae biomass as a sustainable source for biofuel, biochemical and biobased value-added products: An integrated biorefinery concept

生物炼制 生物燃料 生物量(生态学) 附加值 生物柴油 环境科学 生化工程 生物能源 制浆造纸工业 生物技术 生物 工程类 生态学 生物化学 宏观经济学 催化作用 经济
作者
Sk. Yasir Arafat Siddiki,M. Mofijur,P. Senthil Kumar,Shams Forruque Ahmed,Abrar Inayat,Fitranto Kusumo,Irfan Anjum Badruddin,T. M. Yunus Khan,Long D. Nghiem,Hwai Chyuan Ong,T.M.I. Mahlia
出处
期刊:Fuel [Elsevier BV]
卷期号:307: 121782-121782 被引量:425
标识
DOI:10.1016/j.fuel.2021.121782
摘要

Microalgal biomass has been proved to be a sustainable source for biofuels including bio-oil, biodiesel, bioethanol, biomethane, etc. One of the collateral benefits of integrating the use of microalgal technologies in the industry is microalgae’s ability to capture carbon dioxide during the application and biomass production process and consequently reducing carbon dioxide emissions. Although microalgae are a feasible source of biofuel, industrial microalgae applications face energy and cost challenges. To overcome these challenges, researchers have been interested in applying the bio-refinery approach to extract the important components encapsulated in microalgae. This review discusses the key steps of microalgae-based biorefinery including cultivation and harvesting, cell disruption, biofuel and value-added compound extraction along with the detailed technologies associated with each step of biorefinery. This review found that suitable microalgae species are selected based on their carbohydrate, lipid and protein contents and selecting the suitable species are crucial for high-quality biofuel and value-added products production. Microalgae species contain carbohydrates, proteins and lipids in the range of 8% to 69.7%, 5% to 74% and 7% to 65% respectively which proved their ability to be used as a source of value-added commodities in multiple industries including agriculture, animal husbandry, medicine, culinary, and cosmetics. This review suggests that lipid and value-added products from microalgae can be made more economically viable by integrating upstream and downstream processes. Therefore, a systematically integrated genome sequencing and process-scale engineering approach for improving the extraction of lipids and co-products is critical in the development of future microalgal biorefineries.
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