Chalapud Mayra C, Carrín María Elena
Departamento de Ingeniería Química, Universidad Nacional del Sur (UNS), Bahía Blanca, Argentina.
Planta Piloto de Ingeniería Química - PLAPIQUI (UNS-CONICET), Bahía Blanca, Argentina.
Compr Rev Food Sci Food Saf. 2023 May;22(3):2161-2196. doi: 10.1111/1541-4337.13143. Epub 2023 Mar 30.
Oilseeds are sources of not only major compounds such as oil and meal but also of bioactive compounds. Their conventional extraction is related to long extraction time, large non-renewable solvent consumption, high temperature, and therefore, high energy consumption. Ultrasound-assisted extraction (UAE) has emerged as a new and green technology, which can accelerate and/or improve the extraction process of these compounds. Moreover, the possibility of using renewable solvents in the UAE enhances its application and allows obtaining both extracted and remaining products more compatible with current human consumption requirements. This article examines the mechanisms, concepts, and factors that impact oilseeds' UAE with an emphasis on the extraction yield and quality of oil, meal, and bioactive compounds. Furthermore, the effects of combining UAE with other technologies are addressed. Gaps detected in the analyzed literature about oilseed treatment and quality and properties of products, in addition to perspectives about their uses as food ingredients, are also included. Moreover, it highlights the need for increasing research on process scalability, on environmental and economic impacts of the whole process, and on the phenomenological description about the effect of process variables on extraction performances, which will be a key tool for process design, optimization, and control. Understanding ultrasound processing techniques for the extraction of different compounds from oilseeds will serve as useful information for fats and oils and meal scientists in academia and industry to explore the possibility of employing this sustainable approach during the extraction treatment of various crops.
油籽不仅是油脂和粕等主要成分的来源,也是生物活性化合物的来源。其传统提取方法存在提取时间长、不可再生溶剂消耗量大、温度高以及能耗高的问题。超声辅助提取(UAE)作为一种新型绿色技术应运而生,它可以加速和/或改善这些化合物的提取过程。此外,在超声辅助提取中使用可再生溶剂的可能性增强了其应用,并使得所获得的提取物和剩余产物更符合当前人类消费需求。本文研究了影响油籽超声辅助提取的机制、概念和因素,重点关注油脂、粕和生物活性化合物的提取率和质量。此外,还探讨了超声辅助提取与其他技术相结合的效果。分析文献中关于油籽处理以及产品质量和特性所发现的差距,以及它们作为食品成分的用途展望也包括在内。此外,本文强调了加强对工艺可扩展性、整个过程的环境和经济影响以及工艺变量对提取性能影响的现象学描述的研究的必要性,这将是工艺设计、优化和控制的关键工具。了解从油籽中提取不同化合物的超声处理技术,将为学术界和工业界的油脂和粕类科学家提供有用信息,以便他们探索在各种作物的提取处理过程中采用这种可持续方法的可能性。