首页> 外文期刊>European Journal of Lipid Science and Technology >Optimization of Supercritical CO2 Operative Parameters to Simultaneously Increase the Extraction Yield of Oil and Pentacyclic Triterpenes from Artichoke Leaves and Stalks by Response Surface Methodology and Ridge Analysis
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Optimization of Supercritical CO2 Operative Parameters to Simultaneously Increase the Extraction Yield of Oil and Pentacyclic Triterpenes from Artichoke Leaves and Stalks by Response Surface Methodology and Ridge Analysis

机译:超临界CO2操作参数的优化同时通过响应表面方法和脊分析同时增加朝鲜蓟叶和茎秆的油和五环三萜的提取产量

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摘要

Supercritical carbon dioxide (SC-CO2) extraction is carried out to simultaneously increase yield of extracted oil and the content of pentacyclic triterpenes from residual parts of globe artichoke. Box-Behnken design is used to design a set of comprehensive experiments. Single and interactive effects of four processing variables (pressure, temperature, time, and particle size) are investigated by response surface methodology (RSM), which is also used to establish regression model according to the synthesis score of extracted oil and pentacyclic triterpenes (PTs). On the other hand, the combination of SC-CO2 factors is optimized by ridge analysis. As a result, the optimal combination is obtained at 22.27 MPa, 41.33 degrees C, particle size of 53.66 mesh within 2 h. Furthermore, the oil components extracted from SC-CO2 and Soxhlet extraction (SE) are analyzed using GC-MS. In contrast with SE, SC-CO2 is more effective to increase the content of PTs in extracted oil of globe artichoke. Practical Applications: Industrial processing of globe artichoke can cause 80-85% waste of total plant biomass, which mainly consists of the inedible parts. However, the by-products of globe artichoke contain many kinds of nutritional compounds, such as sesterpenes and triterpenes. The application of SC-CO2 can extract these compounds safely and effectively. With optimization of SC-CO2, sustainability of processing of globe artichoke can be maintained economically. A processing method of supercritical carbon dioxide (SC-CO2) extraction is optimized to increase the yield of extracted oil and the content of pentacyclic triterpenes (PTs) simultaneously from globe artichoke. Afterward, the pentacyclic triterpenes in the extracted oil are analyzed by GC-MS and six types of PTs in globe artichoke are identified. Additionally, the influence of SC-CO2 extraction is analyzed using the principal component analysis method. Meanwhile, the interactions of two processing factors on the yield of extracted oil are analyzed.
机译:进行超临界二氧化碳(SC-CO2)萃取,以同时增加提取的油的产率和来自全球朝鲜蓟的残余部分的戊基序列的戊基三萜含量。 Box-Behnken设计用于设计一套综合实验。通过响应表面方法(RSM)研究了四种处理变量(压力,温度,时间和粒度)的单一和交互式效果,其还用于根据提取的油和五环三萜的合成评分建立回归模型(PTS )。另一方面,SC-CO2因子的组合通过RIGE分析优化。结果,在22.27MPa,41.33摄氏度,粒度为53.66目,在2小时内获得最佳组合。此外,使用GC-MS分析从SC-CO2和SOXHLEX提取(SE)中提取的油组分。与SE形成对比,SC-CO 2更有效地增加朝鲜蓟提取的油中PTS的含量。实际应用:地球朝鲜蓟的工业加工可导致总植物生物质浪费80-85%,这主要包括可行的零件。然而,全球朝鲜蓟的副产品含有多种营养化合物,例如Sesterpenes和Triterpenes。 SC-CO2的应用可以安全有效地提取这些化合物。随着SC-CO2的优化,可以在经济上保持全球朝鲜蓟加工的可持续性。优化超临界二氧化碳(SC-CO2)提取的处理方法,以增加来自地球朝鲜蓟的提取物油和五环三萜(PTS)含量的产率。之后,通过GC-MS分析所提取的油中的五环三萜,并鉴定了全球朝鲜蓟中的六种类型的PTS。另外,使用主成分分析方法分析SC-CO2提取的影响。同时,分析了两种处理因子对提取油产量的相互作用。

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