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The Impact of Temperature and Ethanol Concentration on the Global Recovery of Specific Polyphenols in an Integrated HPLE/RP Process on Carménère Pomace Extracts

机译:温度和乙醇浓度对Carménère果渣提取物的HPLE / RP集成过程中特定多酚的总体回收率的影响

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摘要

Sequential extraction and purification stages are required to obtain extracts rich in specific polyphenols. However, both separation processes are often optimized independently and the effect of the integrated process on the global recovery of polyphenols has not been fully elucidated yet. We assessed the impact of hot-pressurized liquid extraction (HPLE) conditions (temperature: 90–150 °C; ethanol concentration: 15%–50%) on the global recovery of specific phenolic acids, flavanols, flavonols and stilbenes from Carménère grape pomace in an integrated HPLE/resin purification (RP) process. HPLE of phenolic acids, flavanols and stilbenes were favored when temperature and ethanol concentration increased, except for chlorogenic acid which showed an increment of its Gibbs free energy of solvation at higher ethanol contents. Ethanol concentration significantly impacted the global yield of the integrated HPLE/RP process. The lower the ethanol content of the HPLE extracts, the higher the recovery of phenolic acids, flavanols and stilbenes after RP, except for flavonols which present more polar functional groups. The best specific recovery conditions were 150 °C and ethanol concentrations of 15%, 32.5% and 50% for phenolic acids, flavanols and stilbenes, and flavonols, respectively. At 150 °C and 32.5% of ethanol, the extracts presented the highest total polyphenol content and antioxidant capacity. The integrated HPLE/RP process allows a selective separation of specific polyphenols and eliminates the interfering compounds, ensuring the safety of the extracts at all evaluated conditions.
机译:需要顺序提取和纯化步骤以获得富含特定多酚的提取物。然而,两种分离方法通常是独立优化的,并且尚未完全阐明集成方法对多酚整体回收的影响。我们评估了热压液体萃取(HPLE)条件(温度:90–150°C;乙醇浓度:15%–50%)对从Carménère葡萄果渣中特定酚酸,黄烷醇,黄酮醇和丁苯的全球回收率的影响在集成的HPLE /树脂纯化(RP)过程中进行。当温度和乙醇浓度增加时,酚酸,黄烷醇和对苯二酚的HPLE受到青睐,除了绿原酸在较高乙醇含量下显示出其吉布斯溶剂化自由能增加之外。乙醇浓度显着影响了HPLE / RP集成工艺的全球产量。 HPLE提取物中的乙醇含量越低,RP后酚酸,黄烷醇和对苯二酚的回收率就越高,除了具有更多极性官能团的黄酮醇。最佳的比回收率最佳条件是酚醛酸,黄烷醇和丁苯醚和黄酮醇的乙醇浓度分别为150°C和15%,32.5%和50%。在150°C和32.5%的乙醇下,提取物的总多酚含量和抗氧化能力最高。集成的HPLE / RP工艺可选择性分离特定的多酚,并消除干扰化合物,确保提取物在所有评估条件下的安全性。

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