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Production of a natural color through microwave‐assisted extraction of saffron tepals anthocyanins

机译:通过微波辅助提取藏红花tepal的花色苷产生天然色

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摘要

The extraction of anthocyanins from saffron (Crocus sativus) flower's tepal by microwave‐assisted extraction (MAE) was studied. The independent factors were solvent to sample ratio (10:1‒100:1), extraction temperature (35‒75°C), and time (5‒15 min). Maximum irradiation power in all experiments was 360 W. We applied response surface methodology (RSM) in order to determine optimum processing conditions which give maximum extraction efficiency (mg cyanidin‐3‐glucoside/g dried tepals). It was found that the influence of solvent ratio was more important for extraction yield than two other variables. Extraction conditions which maximized the extracted anthocyanins content were ratio of solvent to sample 77.5 ml/g, temperature 48°C, and extraction time of 9.3 min that resulted in 101 mg anthocyanins/g. In addition, MAE was a rapid and efficient technique for saffron anthocyanins due to disruption of cell walls under microwave irradiation, which was observed by microstructural analysis.
机译:研究了用微波辅助提取法(MAE)从藏红花花茶中提取花色苷的方法。独立因素是溶剂与样品的比例(10:1‒100:1),萃取温度(35‒75°C)和时间(5‒15分钟)。在所有实验中,最大照射功率为360 W.我们采用响应面分析法(RSM)来确定能够获得最大提取效率的最佳处理条件(mg cyanidin-3-glucoside / g dry Tepals)。发现溶剂比的影响对于萃取产率比其他两个变量更重要。使提取的花色苷含量最大化的提取条件是溶剂与样品的比例为77.5 ml / g,温度为48°C,提取时间为9.3 min,从而获得101 mg花色苷/ g。此外,MAE是一种用于藏红花花色苷的快速有效技术,由于微波照射下细胞壁的破坏,因此可以通过显微结构分析观察到。

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