首页> 外文期刊>Indian drugs >OPTIMIZATION OF ULTRASONIC ASSISTED EXTRACTION OF ANTIOXIDANTS FROM MORINGA OLEIFERA LAM. LEAVES USING RESPONSE SURFACE METHODOLOGY
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OPTIMIZATION OF ULTRASONIC ASSISTED EXTRACTION OF ANTIOXIDANTS FROM MORINGA OLEIFERA LAM. LEAVES USING RESPONSE SURFACE METHODOLOGY

机译:超声波辅助抗氧化剂的优化来自辣木的抗氧化剂。 留下响应表面方法

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摘要

The present study was embarked upon for the optimization of conditions aimed at ultrasonic assisted extraction (UAE) of antioxidant chemicals from Moringa oleifera leaves by applying response surface methodology (RSM) based on face centered central composite design (CCD). Evaluation was done at three levels (20 experimental designs) with three process variables: extraction temperature (20, 30, 40 °C), extraction time (20, 30, 40 min) and liquid-solid ratio (20:1, 30:1, 40:1) using probe sonicator. The extraction process optimization based on RSM was focused on the capacity of antioxidants present in the extracts to scavenge the 2,2-diphenyl-1-picrylhydrazyl radical (DPPH) free radicals. To envisage the optimization process, multiple regression analysis was carried out using RSM tool to obtain a quadratic polynomial equation. Stastical analysis of the factors and their interactions were tested using analysis of variance (ANOVA). Extraction of antioxidants was mainly influenced by liquid-solid ratio and temperature. The ideal combination of variables designed by RSM for maximum radical-scavenging activity was optimized with extracting temperature of 39.80 °C, extracting time of 39.95 min and liquid-solid ratio of 24.00 mL/g to obtain a predicted value of 85.528% of DPPH radical-scavenging activity, which was very close to the experimentally value of 86.49 % with an error of 1.12%, indicating suitability of the model.
机译:本研究开始通过基于面对中心复合设计(CCD)的响应面方法(RSM)来探讨来自Moringa Oleifera叶子的超声波辅助萃取(UAE)的抗氧化剂化学品的抗氧化剂萃取(UAE)的条件。评价是在三个层次(20个实验设计)中进行的三个过程变量:提取温度(20,30,40℃),提取时间(20,30,40分钟)和液体 - 固体比(20:1,30: 1,40:1)使用探针Sonicator。基于RSM的提取过程优化专注于提取物中存在的抗氧化剂的能力,以清除2,2-二苯基-1-富铬基自由基(DPPH)自由基。为了设想优化过程,使用RSM工具进行多元回归分析以获得二次多项式方程。使用差异分析(ANOVA)测试了对因子的体力分析及其相互作用。抗氧化剂的提取主要受液态比率和温度的影响。由RSM设计的最大自由基清除活性的理想组合通过提取温度为39.80°C,提取时间为39.95分钟和24.00ml / g的液体 - 实线比,获得预测值的85.528%的DPPH激进的值-Scavenging活动,非常接近实验价值86.49%,误差为1.12%,表明模型的适用性。

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