Department of Biotechnology and Food Science, Norwegian University of Science and Technology (NTNU), 7491, Trondheim, Norway.
Department of Fish Processing Technology, KUFOS, Kerala, India.
Environ Sci Pollut Res Int. 2024 Nov;31(53):62230-62248. doi: 10.1007/s11356-023-28610-w. Epub 2023 Jul 11.
Tuna is an economically significant seafood, harvested throughout the world, and is heavily traded due to its high nutritional quality and consumer acceptance. Tuna meat is rich in essential nutrients such as amino acids, polyunsaturated fatty acids (PUFA), and trace minerals. The huge volume of solid and liquid sidestreams generated during the processing stages of tuna is creating environmental and socioeconomic challenges in coastal areas. Different products such as fish meal, protein hydrolysates, collagen, enzymes, oil, and bone powder can be produced from tuna sidestreams. Using different nutrient recovery technologies like enzymatic hydrolysis, chemical processing, and green technologies, various categories of product value chains can be created in line with the conventional processing industry. This review attempts to provide a route map for the tuna industry for achieving the circular blue-bioeconomic objectives and reorient the irregular utilization pattern into a sustainable and inclusive path.
金枪鱼是一种具有重要经济意义的海鲜,在全球范围内捕捞,并因其高营养价值和消费者接受度而大量交易。金枪鱼肉质富含必需营养素,如氨基酸、多不饱和脂肪酸 (PUFA) 和痕量矿物质。金枪鱼加工过程中产生的大量固体和液体副产物,给沿海地区带来了环境和社会经济方面的挑战。可以从金枪鱼副产物中生产出不同的产品,如鱼粉、蛋白质水解物、胶原蛋白、酶、油和骨粉。利用酶解、化学处理和绿色技术等不同的营养回收技术,可以根据传统加工业创建各种类别的产品价值链。本综述旨在为金枪鱼产业实现循环蓝色-生物经济目标提供路线图,并将其不规则的利用模式重新调整为可持续和包容性的发展道路。