生物炼制
生物量(生态学)
生物制品
生物燃料
原材料
生物能源
生物柴油
环境科学
可再生能源
废物管理
制浆造纸工业
生物技术
生化工程
化学
工程类
催化作用
农学
生物
电气工程
有机化学
生物化学
作者
Sujatha Sadana,M. Rajasimman,Senthil Kumar Sanjay,V. Shyam Kishore,Balasubramani Senthil Rathi,Shahabaldin Rezania,Hesam Kamyab,Yasser Vasseghian
摘要
Abstract Biomass is a valuable renewable energy adapted as an alternative to traditional fossil fuels. Apart from fuels, biomass is synthesized into highly valuable products that are used in various forms including biofuels, biochemical, bioproducts, packing material, and find practice in pharmaceutical, cosmetics, and nutraceuticals industries. Particularly, microalgae a third‐generation feedstock known for its rich carbon content possesses protein lipids and carbohydrates produces a variety of green products such as bioethanol, biohydrogen, biodiesel, and biomethane, and also fixes carbon emission to a certain amount in the atmosphere. However, microalgae conversion in the presence of a catalyst such as a metal–organic framework (MOF) yields high‐quality valuable products. A MOF is a porous crystalline material where the structure and pore size can be controlled making it suitable for catalytic reactions and appropriate conversion paths. This review briefly explains the prevailing status of microalgae as a sustainable biomass and features its components for microalgae biorefinery into valuable products and its application in the food industry. MOF properties, characteristics and various MOF‐based conversion technologies for biomass conversion with its application are elaborated. In addition, usage of value products produced from microalgae biorefinery in the food industry and its importance is elucidated. In addition, the challenges in integrating biorefinery processes with food industry operations and their solutions are also presented. © 2024 Society of Chemical Industry.
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