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首页> 外文期刊>Journal of Food Science and Technology >Box-Behnken design based multi-response analysis and optimization of supercritical carbon dioxide extraction of bioactive flavonoid compounds from tea (Camellia sinensis L.) leaves
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Box-Behnken design based multi-response analysis and optimization of supercritical carbon dioxide extraction of bioactive flavonoid compounds from tea (Camellia sinensis L.) leaves

机译:基于Box-Behnken设计的多响应分析和超临界二氧化碳萃取茶(Camellia sinensis L.)叶片中生物活性类黄酮化合物的优化

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摘要

The popularity of tea is increasing on the global aspect because of its role as a significant source of phenolic compounds in human diet. The objectives of this present study is to develop a supercritical carbon dioxide (SC-CO2) extraction method suitable for extraction of phenolic compounds such as total phenolics, flavonoids and tannin from tea leaves at various extraction conditions such as extraction pressure (100-200 bar), temperature (40-60 A degrees C) and co-solvent (ethanol) flow rate (1-3 g/min). Furthermore, the total antioxidant activity of the SC-CO2 tea leaves extracts was assessed using ABTS(+) (2, 2'-azino-bis (3-ethylbenzothiazoline-6-sulphonic acid)) method. Response surface methodology (RSM) combined with Box-Behnken design was used to investigate and optimize the process variables. The results showed that, extraction pressure and co-solvent flow rate have significant effect on the responses. From the experimental data, second order polynomial mathematical models were developed for each response with high coefficient of determination value (R (2) > 0.95). An optimization study using Derringer's desired function methodology was performed and the optimal conditions based on both individual and combinations of all independent variables (extraction pressure of 188 bar, temperature of 50 A degrees C and co-solvent flow rate of 2.94 g/min) were determined with maximum total phenolic content of 131.24 mg GAE/100 ml, total flavonoid content of 194.60 mg QE/100 ml, total tannin content of 49.99 mg TAE/100 ml and totalantioxidant activity of 262.23 mu Mol TEAC/100 ml of extracts respectively with a overall desirability value of 0.983, which was confirmed through validation experiments.
机译:由于茶作为人类饮食中酚类化合物的重要来源,因此在全球范围内,茶的流行程度正在增加。本研究的目的是开发一种超临界二氧化碳(SC-CO2)提取方法,该方法适用于在各种提取条件(例如提取压力(100-200 bar))下从茶叶中提取酚类化合物,例如总酚,类黄酮和单宁),温度(40-60 A摄氏度)和助溶剂(乙醇)流速(1-3 g / min)。此外,使用ABTS(+)(2,2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸))方法评估SC-CO2茶叶提取物的总抗氧化活性。响应面方法(RSM)结合Box-Behnken设计用于研究和优化过程变量。结果表明,萃取压力和助溶剂流速对反应有显着影响。从实验数据中,为每个响应建立了具有高确定系数值的二阶多项式数学模型(R(2)> 0.95)。使用Derringer的所需函数方法进行了优化研究,并且基于所有独立变量(萃取压力为188 bar,温度为50 A摄氏度且助溶剂流量为2.94 g / min)的单独变量和组合得出了最佳条件。测定的最大酚含量分别为131.24 mg GAE / 100 ml,总黄酮含量194.60 mg QE / 100 ml,总单宁含量49.99 mg TAE / 100 ml和总抗氧化活性262.23μMol TEAC / 100 ml提取物总的合意性值为0.983,这已通过验证实验确认。

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