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Total phenolic content and total flavonoid of H.Polyrhizus waste extract by using ultrasonic solvents extraction

机译:超声波提取法提取人参废提取物中总酚含量和总黄酮

摘要

Research in extracting colour from natural fruits has been actively conducted nowadays. In this research, red pitaya peels was selected as a raw material. Red pitaya peels was selected because of red pitaya easily find in local market and its can reduce waste production in the world, which is environmental friendly. This research is to analyze the total phenolic contents and total flavonoids from red pitaya peels. Its also analyze the effect of the different solvents to the production of natural color from red pitaya waste. Four different solvents: n-hexane, ethanol, propanol and acetone has been used in extracting total phenolic contents and total flavonoid from red pitaya waste. Three different parameter of ultrasonic extractor (25, 68, 132 kHz) were used in extracting red pitaya peels with four solvents respectively. The analysis was conducted in University Malaysia Pahang laboratory using the ultraviolet-visible spectrophotometry. Most important step in this research is the analysis of total phenolic and total flovonoid contents for twelve samples. Based on the result of this research, the best solvent for total phenolics and flavonoids from red pitaya waste is ethanol, followed by propanol and acetone. This is due to the highest polarity of ethanol. On the other hand, n-hexane extracts show the lowest total phenolic and flavonoids contents. 132kHz ultrasonic extractor extracts more total phenolic and flavonoids contents, follow by 68kHz and 25kHz ultrasonic extractor. As a conclusion, the highest polarity of the solvents and frequency extract more color pigments, total phenolic and flavonoids from red pitaya waste.
机译:如今,已经积极地进行了从天然水果中提取色素的研究。在这项研究中,红火龙果皮被选为原料。选择红火龙果皮是因为它在当地市场上很容易找到,并且可以减少世界范围内的废物产生,这是环保的。本研究旨在分析红火龙果皮中的总酚含量和总黄酮含量。它还分析了不同溶剂对红火龙果废料产生自然色的影响。四种不同的溶剂:正己烷,乙醇,丙醇和丙酮已用于从红色火龙果废料中提取总酚含量和总黄酮。超声提取器的三个不同参数(25、68、132 kHz)分别用于用四种溶剂提取红火龙果皮。该分析是在马来西亚彭亨大学实验室使用紫外可见分光光度法进行的。这项研究中最重要的步骤是分析12个样品的总酚和总类黄酮含量。根据这项研究的结果,从红火龙果废料中提取总酚和类黄酮的最佳溶剂是乙醇,其次是丙醇和丙酮。这是由于乙醇的极性最高。另一方面,正己烷提取物的总酚和类黄酮含量最低。 132kHz超声波提取器提取更多的总酚和类黄酮含量,其次是68kHz和25kHz超声波提取器。结论是,溶剂的最高极性和频率可从红色火龙果废料中提取出更多的彩色颜料,总酚和类黄酮。

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    Lee Qiao Hui;

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  • 年度 2009
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