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Supercritical Fluid Extraction of Plant Flavors and Fragrances

机译:植物香料和香精的超临界流体萃取

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摘要

Supercritical fluid extraction (SFE) of plant material with solvents like CO2, propane, butane, or ethylene is a topic of growing interest. SFE allows the processing of plant material at low temperatures, hence limiting thermal degradation, and avoids the use of toxic solvents. Although today SFE is mainly used for decaffeination of coffee and tea as well as production of hop extracts on a large scale, there is also a growing interest in this extraction method for other industrial applications operating at different scales. In this review we update the literature data on SFE technology, with particular reference to flavors and fragrance, by comparing traditional extraction techniques of some industrial medicinal and aromatic crops with SFE. Moreover, we describe the biological activity of SFE extracts by describing their insecticidal, acaricidal, antimycotic, antimicrobial, cytotoxic and antioxidant properties. Finally, we discuss the process modelling, mass-transfer mechanisms, kinetics parameters and thermodynamic by giving an overview of SFE potential in the flavors and fragrances arena.
机译:用溶剂(例如CO2,丙烷,丁烷或乙烯)对植物材料进行超临界流体萃取(SFE)是一个越来越引起人们关注的话题。 SFE允许在低温下加工植物材料,从而限制了热降解,并避免使用有毒溶剂。尽管如今SFE主要用于咖啡和茶的脱咖啡因以及大规模生产啤酒花提取物,但对于其他以不同规模运行的工业应用,这种提取方法也引起了越来越多的兴趣。在这篇综述中,我们通过将一些工业药用和芳香作物的传统提取技术与SFE进行比较,来更新有关SFE技术的文献数据,特别是有关风味和香气的文献。此外,我们通过描述SFE提取物的杀虫,杀螨,抗真菌,抗菌,细胞毒性和抗氧化特性来描述其生物活性。最后,通过概述香料和香料领域中的SFE潜力,我们讨论了过程建模,传质机理,动力学参数和热力学。

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