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Ultrasound-assisted extraction of hesperidin from Penggan (Citrus reticulate) peel

机译:超声辅助提取彭干果皮中橙皮苷的含量

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摘要

Hesperidin, an abundant and inexpensive bioflavonoid in Penggan (Citrus reticulate) peel, has been reported to possess a wide range of pharmacological properties. Ultrasonic extraction is an effective technique for the isolation of bioactive compounds from vegetable materials. In this study, the application of ultrasonic method was shown to be more efficient in extracting hesperidin from Penggan (C. reticulate) peel than the classical method. The effects of main ultrasonic-assisted extraction conditions on extraction yields of hesperidin from Penggan (C. reticulata) peel were evaluated, including extraction solvents, solvent volume, temperature, extraction time, ultrasonic power, ultrasonic frequency. Results showed that solvent, frequency and processing temperature were the most important factors for improving the extracting yields of hesperidin. When performed at the same temperature under the same time using three frequencies, methanol as the solvent improved the extraction yield evidently compared with ethanol or isopropanol; by comparison of the frequency influence, the yield of hesperidin was higher at 60 kHz than at 20 kHz and 100 kHz. The optimum ultrasonic conditions were determined as: methanol, frequency of 60 kHz, extraction time of 60 min, and temperature of 40 degrees C. In addition, the ultrasonic power had a weak effect on the yields of hesperidin within the experimental range. Extending ultrasonic treatment times did not result in degradation of hesperidin; the rotary beaker for materials can increase the yields of hesperidin. (c) 2007 Elsevier B.V. All rights reserved.
机译:橙皮苷是彭干果皮中大量而廉价的生物类黄酮,据报道具有广泛的药理特性。超声波提取是从植物材料中分离生物活性化合物的有效技术。在这项研究中,超声法的应用显示出比传统方法更有效的从蓬干果皮中提取橙皮苷。评估了主要超声辅助提取条件对彭干皮中橙皮苷提取率的影响,包括提取溶剂,溶剂体积,温度,提取时间,超声功率,超声频率。结果表明,溶剂,频率和加工温度是提高橙皮苷提取率的最重要因素。在相同温度,三个频率下同时进行时,与乙醇或异丙醇相比,甲醇作为溶剂可明显提高提取率;通过比较频率影响,橙皮苷的产量在60 kHz时比在20 kHz和100 kHz时要高。确定最佳超声条件为:甲醇,频率为60 kHz,提取时间为60分钟,温度为40℃。此外,超声功率对橙皮苷的收率影响不大。延长超声处理时间不会导致橙皮苷降解。用于材料的旋转烧杯可以提高橙皮苷的产量。 (c)2007 Elsevier B.V.保留所有权利。

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