Food Chemistry and Food Development, Department of Biochemistry, University of Turku, Turku, Finland.
Biological and Chemical Engineering, Department of Engineering, Aarhus University, Aarhus, Denmark.
Crit Rev Food Sci Nutr. 2022;62(11):2942-2962. doi: 10.1080/10408398.2020.1861426. Epub 2021 Jan 22.
Fish and algae are the major sources of n-3 polyunsaturated fatty acids (n-3 PUFAs). Globally, there is a rapid increase in demand for n-3 PUFA-rich oils. Conventional oil production processes use high temperature and chemicals, compromising the oil quality and the environment. Hence, alternative green technologies have been investigated for producing oils from aquatic sources. While most of the studies have focused on the oil extraction and enrichment of n-3 PUFAs, less effort has been directed toward green refining of oils from fish and algae. Enzymatic processing and ultrasound-assisted extraction with environment-friendly solvents are the most promising green technologies for extracting fish oil, whereas pressurized extractions are suitable for extracting microalgae oil. Lipase-catalysed ethanolysis of fish and algae oil is a promising green technology for enriching n-3 PUFAs. Green refining technologies such as phospholipase- and membrane-assisted degumming deserve investigation for application in fish and algal oils. In the current review, we critically examined the currently existing research on technologies applied at each of the steps involved in the production of oils rich in n-3 PUFAs from fish and algae species. Special attention was placed on assessment of green technologies in comparison with conventional processing methods.
鱼类和藻类是 n-3 多不饱和脂肪酸(n-3 PUFAs)的主要来源。在全球范围内,对富含 n-3 PUFA 的油的需求迅速增加。传统的油生产工艺使用高温和化学品,这会影响油的质量和环境。因此,人们研究了替代的绿色技术,以从水生资源中生产油。虽然大多数研究都集中在油的提取和 n-3 PUFAs 的富集上,但在鱼类和藻类油的绿色精炼方面的努力较少。酶处理和超声辅助提取与环保溶剂是提取鱼油最有前途的绿色技术,而加压提取则适用于提取微藻油。脂肪酶催化的鱼油和藻油的乙醇解是富集 n-3 PUFAs 的有前途的绿色技术。值得研究磷脂酶和膜辅助脱胶等绿色精炼技术在鱼类和藻类油中的应用。在本综述中,我们批判性地审查了目前关于从鱼类和藻类物种中生产富含 n-3 PUFAs 的油的各个步骤中应用的技术的现有研究。特别关注与传统加工方法相比对绿色技术的评估。