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Screening of Microwave-Assisted-Batch Extraction Parameters for Recovering Total Phenolic and Flavonoid Contents from Chromolaena odorata Leaves through Two-Level Factorial Design

机译:通过两级因子设计筛选来自Chormolaena Odorata叶子的微波辅助分批萃取参数的微波辅助分批提取参数

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Microwave-assisted-extraction (MAE) of phenolic compounds from Chromolaena odorata leaves was investigated using one-factor-at-a-time (OFAT) and two-level factorial design. The MAE parameters studied were irradiation time (A: 1-5 min); microwave power level (B: 400-800 W); extraction temperature (C: 60-80 degrees C); solvent/feed ratio (D: 8:1-14:1 mL/g); and ethanol concentration (E: 20-60% v/v). The optimum yields of TPC and TFC were 56.13 mg GAE/g d.w. and 44.78 mg QE/g d.w., respectively were achieved from MAE of C. odorata leaf at irradiation time of 2 min, microwave power of 600 W, temperature of 60 degrees C, solvent:feed ratio of 10:1 mL/g, and ethanol concentration of 40% v/v through one-factor-at-time (OFAT) experimental trials. The results obtained from a two-level factorial design experiments demonstrated that only ethanol concentration (20-60% v/v), irradiation time (1-5 min) and microwave power level (400-800 W) had significant effects on the yields of total phenolic content (TPC) and total flavonoid content (TFC) from C. odorata leaves (p < 0.05). However, temperature and solvent/feed ratio was not significant. In addition, the interactions AB (irradiation time and microwave power) and AE (irradiation time and ethanol concentration) contributed greatly to the recovery yields.
机译:使用单因素 - AT-AT-TIME(OFAT)和两级派分设计来研究来自Chromolaena Odorata叶子的酚类化合物的微波辅助提取(MAE)。研究的MAE参数是照射时间(A:1-5分钟);微波功率水平(B:400-800 W);提取温度(C:60-80℃);溶剂/进料比(D:8:1-14:1 ml / g);和乙醇浓度(E:20-60%v / v)。 TPC和TFC的最佳产量为56.13mg gae / g d.w。和44.78mg qe / g dw分别从C. Odorata叶片的辐射时间达到2分钟,微波功率为600W,温度为60℃,溶剂:进料比为10:1ml / g,乙醇浓度为40%v / v通过单因素 - 时间(OFAT)实验试验。从两级阶乘设计实验中获得的结果表明,只有乙醇浓度(20-60%v / v),照射时间(1-5分钟)和微波功率水平(400-800 w)对产率有显着影响总酚类含量(TPC)和来自C. Odorata叶子的总黄酮含量(TFC)(P <0.05)。但是,温度和溶剂/进料比率不显着。另外,相互作用Ab(照射时间和微波功率)和Ae(辐照时间和乙醇浓度)对回收率大大贡献。

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