Hedayati Sara, Tarahi Mohammad, Madani Arghavan, Mazloomi Seyed Mohammad, Hashempur Mohammad Hashem
Nutrition Research Center, School of Nutrition and Food Sciences, Shiraz University of Medical Sciences, Shiraz 7193635899, Iran.
Department of Food Science and Technology, School of Agriculture, Shiraz University, Shiraz 7144165186, Iran.
Foods. 2025 Jan 2;14(1):100. doi: 10.3390/foods14010100.
Lavender is one of the most appreciated aromatic plants, with high economic value in food, cosmetics, perfumery, and pharmaceutical industries. Lavender essential oil (LEO) is known to have demonstrative antimicrobial, antioxidant, therapeutic, flavor and fragrance properties. Conventional extraction methods, e.g., steam distillation (SD) and hydro-distillation (HD), have been traditionally employed to extract LEO. However, the low yield, high energy consumption, and long extraction time of conventional methods have prompted the introduction of novel extraction technologies. Some of these innovative approaches, such as ohmic-assisted, microwave-assisted, supercritical fluid, and subcritical water extraction approaches, are used as substitutes to conventional extraction methods. While other methods, e.g., sonication, pulsed electric field, and cold plasma, can be used as a pre-treatment that is preceded by conventional or emerging extraction technologies. These innovative approaches have a great significance in reducing the energy consumption, shortening the extraction time, and increasing the extraction yield and the quality of EOs. Therefore, they can be considered as sustainable extraction technologies. However, the scale-up of emerging technologies to an industrial level should also be investigated from the techno-economic points of view in future studies.
薰衣草是最受青睐的芳香植物之一,在食品、化妆品、香料和制药行业具有很高的经济价值。薰衣草精油(LEO)具有显著的抗菌、抗氧化、治疗、调味和芳香特性。传统上一直采用常规提取方法,如蒸汽蒸馏(SD)和水蒸馏(HD)来提取薰衣草精油。然而,传统方法产量低、能耗高且提取时间长,这促使了新型提取技术的引入。其中一些创新方法,如欧姆辅助、微波辅助、超临界流体和亚临界水提取方法,被用作传统提取方法的替代方法。而其他方法,如超声处理、脉冲电场和冷等离子体,可作为传统或新兴提取技术之前的预处理方法。这些创新方法在降低能耗、缩短提取时间、提高提取产量和精油质量方面具有重要意义。因此,它们可被视为可持续提取技术。然而,在未来的研究中,还应从技术经济角度研究将新兴技术扩大到工业规模的问题。