Bioprocess and Metabolic Engineering Laboratory, School of Food Engineering, University of Campinas (UNICAMP), Campinas, São Paulo 13083-862, Brazil.
Laboratory of Biotechnology, School of Chemistry and Food, Federal University of Rio Grande, Rio Grande, RS 96203-900, Brazil.
Bioresour Technol. 2022 Jan;344(Pt B):126304. doi: 10.1016/j.biortech.2021.126304. Epub 2021 Nov 6.
Microalgae contribute significantly to the global carbon cycle through photosynthesis. Given their ability to efficiently convert solar energy and atmospheric carbon dioxide into chemical compounds, such as carbohydrates, and generate oxygen during the process, microalgae represent an excellent and feasible carbohydrate bioresource. Microalgae-based biofuels are technically viable and, delineate a green and innovative field of opportunity for bioenergy exploitation. Microalgal polysaccharides are one of the most versatile groups for biotechnological applications and its content can be increased by manipulating cultivation conditions. Microalgal carbohydrates can be used to produce a variety of biofuels, including bioethanol, biobutanol, biomethane, and biohydrogen. This review provides an overview of microalgal carbohydrates, focusing on their use as feedstock for biofuel production, highlighting the carbohydrate metabolism and approaches for their enhancement. Moreover, biofuels produced from microalgal carbohydrate are showed, in addition to a new bibliometric study of current literature on microalgal carbohydrates and their use.
微藻通过光合作用对全球碳循环有重要贡献。由于它们能够高效地将太阳能和大气中的二氧化碳转化为化合物,如碳水化合物,并在此过程中产生氧气,因此微藻是一种极好且可行的碳水化合物生物资源。基于微藻的生物燃料在技术上是可行的,并为生物能源开发开辟了一个绿色创新的机会领域。微藻多糖是生物技术应用最广泛的多糖之一,通过操纵培养条件可以增加其含量。微藻碳水化合物可用于生产各种生物燃料,包括生物乙醇、生物丁醇、生物甲烷和生物氢气。本文综述了微藻碳水化合物,重点介绍了它们作为生物燃料生产原料的用途,强调了碳水化合物代谢及其增强方法。此外,还展示了由微藻碳水化合物生产的生物燃料,以及对当前微藻碳水化合物及其用途文献的新文献计量研究。