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Supercritical Fluid Extraction of Volatile Components from Strawberry

机译:超临界流体萃取草莓中挥发性成分

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In order to optimize the supercritical fluid extraction (SFE) conditions of volatile components from the strawberry, we conducted an evaluation of the sample preparation and SFE operating conditions. The analysis of the volatile components extracted by a variety of sample preparation protocols led to the identification of 30, 26, 30, and 34 volatile components in fresh, freeze-dried, 30% celite and 70% celite treatments, respectively. The 70% celite treatment was the most effective in extracting thevolatile components from strawberry via SFE. Analysis of the volatile components extracted by a variety of SFE operating conditions yielded identifications of 34, 35, 34, and 35 volatile components at 3,000 psi (40, 50°C) and 6,000 psi (40, 50°C), respectively. The extraction yield of alcohols and acids, and the total volatile component contents, were highest under conditions of 3,000 psi and 55°C. Volatile components from the strawberry were extracted via SFE, simultaneous steam distillation and extraction (SDE), and solvent extraction (SE). The analysis of the volatile components extracted via different extraction methods resulted in the identification of 56, 34, and 32 volatile components in the SDE, SFE, and SE extracts, respectively. The totalvolatile component contents identified in the SDE, SFE, and SE extracts were 20.268±1.144, 21.627±1.215 and 2.476±0.177mg/kg, respectively. The SFE extract evidenced higher contents of sweet flavors such as 2-methylbutanoic acid, 2-methylpropanoic acid, and hexanoic acid than the SDE and SE extracts. SFE proved to be the most appropriate method for the extraction of fresh volatile components from the strawberry.
机译:为了优化草莓中挥发性成分的超临界流体萃取(SFE)条件,我们对样品制备和SFE操作条件进行了评估。对通过各种样品制备方案提取的挥发性成分的分析导致分别鉴定了新鲜,冻干,30%硅藻土和70%硅藻土处理中的30、26、30和34种挥发性成分。 70%的硅藻土处理最有效地通过SFE从草莓中提取了挥发性成分。通过各种SFE操作条件提取的挥发性成分的分析分别得到了在3,000 psi(40,50°C)和6,000 psi(40,50°C)下的34、35、34和35挥发性成分的鉴定。在3,000 psi和55°C的条件下,醇和酸的提取率以及总挥发性成分含量最高。草莓中的挥发性成分通过SFE,同时蒸汽蒸馏和萃取(SDE)和溶剂萃取(SE)进行萃取。通过不同提取方法提取的挥发性成分的分析结果分别鉴定出SDE,SFE和SE提取物中的56、34和32种挥发性成分。在SDE,SFE和SE提取物中鉴定出的总挥发性成分含量分别为20.268±1.144、21.627±1.215和2.476±0.177mg / kg。与SDE和SE提取物相比,SFE提取物的甜味剂含量更高,例如2-甲基丁酸,2-甲基丙酸和己酸。 SFE被证明是从草莓中提取新鲜挥发性成分的最合适方法。

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