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Rapid and Selective Concentration of Lycopene Z-isomers from Tomato Pulp by Supercritical CO2 with Co-solvents

机译:超临界CO 2 与助溶剂快速,选择性富集番茄浆中番茄红素 Z 异构体

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This study aimed to efficiently separate and concentrate lycopene Z -isomers from tomato pulp using supercritical CO_(2) (SC-CO_(2)). The separation relies on the different solubility of (all-E )-lycopene and the Z isomers. Total lycopene recovery using SC-CO_(2) at 50 °C and 30 MPa for 1 h was extremely low (1.2%). Thus, before the separation test, an optimal co-solvent was selected from water, organic chemicals, and edible vegetable oils; hazelnut oil, which had the highest lycopene recovery (21.6%), was adopted. When using hazelnut oil as a co-solvent, the extraction of lycopene Z -isomers was completed in a short time compared to (all-E )-lycopene. Furthermore, when the extraction was conducted at higher pressure (50 MPa) and temperature (80 °C), the Z -isomer content decreased due to the improvement of (all-E )-lycopene solubility. Thus, to selectively and efficiently extract lycopene Z -isomers, addition of a co-solvent, and a relatively short contact time, low pressure, and low temperature extraction were important.
机译:这项研究旨在使用超临界CO_(2)(SC-CO_(2))从番茄浆中有效分离和浓缩番茄红素Z-异构体。分离依赖于(全-E)-番茄红素和Z异构体的不同溶解度。使用SC-CO_(2)在50°C和30 MPa下进行1小时的番茄红素回收率极低(1.2%)。因此,在分离试验之前,从水,有机化学物质和食用植物油中选择了最佳的助溶剂。采用了番茄红素回收率最高(21.6%)的榛子油。当使用榛子油作为助溶剂时,与(全-E)-番茄红素相比,番茄红素Z-异构体的萃取在短时间内完成。此外,当在较高压力(50MPa)和温度(80℃)下进行萃取时,由于(全-E)-番茄红素溶解度的改善,Z-异构体含量降低。因此,为了选择性和有效地提取番茄红素Z-异构体,添加共溶剂以及相对短的接触时间,低压和低温提取是重要的。

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