Department of Biotechnology, Chonnam National University, San 96-1, Dun-Duk Dong, Yeosu, Chonnam, 550-749, South Korea.
Research Center on Anti-Obesity and Health Care, Chonnam National University, San 96-1, Dun-Duk Dong, Yeosu, Chonnam, 550-749, South Korea.
Microb Cell Fact. 2018 Mar 5;17(1):36. doi: 10.1186/s12934-018-0879-x.
Microalgae have recently attracted considerable interest worldwide, due to their extensive application potential in the renewable energy, biopharmaceutical, and nutraceutical industries. Microalgae are renewable, sustainable, and economical sources of biofuels, bioactive medicinal products, and food ingredients. Several microalgae species have been investigated for their potential as value-added products with remarkable pharmacological and biological qualities. As biofuels, they are a perfect substitute to liquid fossil fuels with respect to cost, renewability, and environmental concerns. Microalgae have a significant ability to convert atmospheric CO to useful products such as carbohydrates, lipids, and other bioactive metabolites. Although microalgae are feasible sources for bioenergy and biopharmaceuticals in general, some limitations and challenges remain, which must be overcome to upgrade the technology from pilot-phase to industrial level. The most challenging and crucial issues are enhancing microalgae growth rate and product synthesis, dewatering algae culture for biomass production, pretreating biomass, and optimizing the fermentation process in case of algal bioethanol production. The present review describes the advantages of microalgae for the production of biofuels and various bioactive compounds and discusses culturing parameters.
微藻最近在全球范围内引起了相当大的兴趣,因为它们在可再生能源、生物制药和营养保健品行业具有广泛的应用潜力。微藻是生物燃料、生物活性药物产品和食品成分的可再生、可持续和经济的来源。已经有几种微藻物种因其作为附加值产品的潜力而受到研究,这些产品具有显著的药理学和生物学特性。作为生物燃料,它们在成本、可再生性和环境问题方面是液体化石燃料的完美替代品。微藻具有将大气 CO 转化为有用产品(如碳水化合物、脂质和其他生物活性代谢物)的巨大能力。尽管微藻一般来说是生物能源和生物制药的可行来源,但仍存在一些限制和挑战,必须克服这些限制和挑战才能将技术从试点阶段提升到工业水平。最具挑战性和关键的问题是提高微藻的生长速度和产物合成、对藻类培养物进行脱水以生产生物质、对生物质进行预处理以及优化发酵过程(如果要生产藻类生物乙醇)。本综述描述了微藻在生产生物燃料和各种生物活性化合物方面的优势,并讨论了培养参数。