Eppink Michel H M, Olivieri Giuseppe, Reith Hans, van den Berg Corjan, Barbosa Maria J, Wijffels Rene H
Bioprocess Engineering, AlgaePARC, Wageningen University, PO Box. 16, 6700 AA, Wageningen, The Netherlands.
University of Nordland, 8049, Bodø, Norway.
Adv Biochem Eng Biotechnol. 2019;166:99-123. doi: 10.1007/10_2016_64.
Microalgae are considered to be one of the most promising next generation bio-based/food feedstocks with a unique lipid composition, high protein content, and an almost unlimited amount of other bio-active molecules. High-value components such as the soluble proteins, (poly) unsaturated fatty acids, pigments, and carbohydrates can be used as an important ingredient for several markets, such as the food/feed/chemical/cosmetics and health industries. Although cultivation costs have decreased significantly in the last few decades, large microalgae production processes become economically viable if all complex compounds are optimally valorized in their functional state. To isolate these functional compounds from the biomass, cost-effective, mild, and energy-efficient biorefinery techniques need to be developed and applied. In this review we describe current microalgae biorefinery strategies and the derived products, followed by new technological developments and an outlook toward future products and the biorefinery philosophy.
微藻被认为是最具前景的下一代生物基/食品原料之一,具有独特的脂质组成、高蛋白含量以及几乎无限量的其他生物活性分子。高价值成分,如可溶性蛋白质、(多)不饱和脂肪酸、色素和碳水化合物,可作为食品/饲料/化工/化妆品和健康产业等多个市场的重要成分。尽管在过去几十年中养殖成本已大幅下降,但如果所有复杂化合物都能在其功能状态下得到最佳利用,大型微藻生产过程在经济上才可行。为了从生物质中分离这些功能化合物,需要开发和应用具有成本效益、温和且节能的生物精炼技术。在本综述中,我们描述了当前的微藻生物精炼策略及其衍生产品,接着介绍了新的技术发展以及对未来产品和生物精炼理念的展望。