首页> 外文期刊>Acta Biologica Szegediensis >Optimization of the extraction of natural phenolic antioxidants from the seeds of Tamarindus indica L. - an undervalued by product of food processing - using response surface methodology
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Optimization of the extraction of natural phenolic antioxidants from the seeds of Tamarindus indica L. - an undervalued by product of food processing - using response surface methodology

机译:使用响应面法优化从罗望子种子中提取天然酚类抗氧化剂的方法-一种被食品加工产品低估的值

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The seeds of Tamarindus indica are known to possess a wide range of phenolic compounds with high antioxidant activity as measured by the ferric reducing antioxidant power (FRAP). In the present study, the optimum conditions for the extraction of crude phenolic antioxidants from Tamarind seed were determined using response surface methodology (RSM). A central composite design (CCD) was used to investigate the effects of four independent variables, namely concentration of extractable solids in solvent (g/ml; X SUB1/SUB), extraction time (h; X SUB2/SUB), extraction temperature (°C; X SUB3/SUB) and solvent concentration (%, v/v; X SUB4/SUB) on the responses of total polyphenol content (TPC) and FRAP. The CCD consisted of 30 experimental runs. A second-order polynomial model was used for predicting the responses. Canonical analysis of the surface responses revealed that the predicted optimal conditions for the maximal yield of TPC and FRAP were concentration of extractable solids in solvent of 0.049 g/ml, extraction time of 3.24 h, extraction temperature of 45 °C and a solvent concentration of 50%. The experimental values in the optimised condition coincided with the predicted ones within a 95% confidence interval, hence indicating the suitability of the model and the success of RSM in optimizing the extraction parameters.
机译:已知罗望子的种子具有多种具有高抗氧化活性的酚类化合物,如通过三价铁还原抗氧化能力(FRAP)测得的。在本研究中,使用响应面法(RSM)确定了从罗望子种子中提取粗制酚类抗氧化剂的最佳条件。使用中央复合设计(CCD)研究四个独立变量的影响,即溶剂中可萃取固体的浓度(g / ml; X 1 ),萃取时间(h; X 2 ),萃取温度(°C; X 3 )和溶剂浓度(%,v / v; X 4 )对总多酚含量的响应(TPC)和FRAP。 CCD包含30个实验运行。使用二阶多项式模型来预测响应。表面响应的典型分析表明,TPC和FRAP的最大收率的预测最佳条件是溶剂中可萃取固体的浓度为0.049 g / ml,萃取时间为3.24 h,萃取温度为45°C和溶剂浓度为50%。优化条件下的实验值与预测值在95%的置信区间内吻合,因此表明模型的适用性和RSM在优化提取参数方面的成功。

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