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Optimum conditions for microwave assisted extraction for recovery of phenolic compounds and antioxidant capacity from macadamia (macadamia tetraphylla) skin waste using water

机译:微波辅助提取用水回收澳洲坚果(Macadamiatetraphylla)皮肤废料中酚类化合物和抗氧化能力的最佳条件

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摘要

This study aimed to develop optimal microwave assisted extraction conditions for recovery of phenolic compounds and antioxidant properties from the macadamia skin, an abundant waste source from the macadamia industry. Water, a safe, accessible, and inexpensive solvent, was used as the extraction solvent and Response Surface Methodology (RSM) was applied to design and analyse the conditions for microwave-assisted extraction (MAE). The results showed that RSM models were reliable for the prediction of extraction of phenolic compounds and antioxidant properties. Within the tested ranges, MAE radiation time and power, as well as the sample-to-solvent ratio, affected the extraction efficiency of phenolic compounds, flavonoids, proanthocyanidins, and antioxidant properties of the macadamia skin; however, the impact of these variables was varied. The optimal MAE conditions for maximum recovery of TPC, flavonoids, proanthocyanidins and antioxidant properties from the macadamia skin were MAE time of 4.5 min, power of 30% (360 W) and sample-to-water ratio of 5 g/100 mL. Under these conditions, an extract could be prepared with TPC of 45 mg/g, flavonoids of 29 mg RUE/g of dried macadamia skin.
机译:这项研究的目的是开发最佳的微波辅助提取条件,以从澳洲坚果皮中回收酚类化合物和抗氧化性能,澳洲坚果皮是一种丰富的废物源。水是一种安全,容易获得且便宜的溶剂,被用作萃取溶剂,响应表面方法学(RSM)用于设计和分析微波辅助萃取(MAE)的条件。结果表明,RSM模型可用于预测酚类化合物的提取和抗氧化性能。在测试范围内,MAE的辐射时间和功率以及样品与溶剂的比例影响了澳洲坚果皮肤中酚类化合物,类黄酮,原花色素的提取效率和抗氧化性能;但是,这些变量的影响是多种多样的。从澳洲坚果皮肤中最大程度地回收TPC,类黄酮,原花色素和抗氧化性能的最佳MAE条件为:MAE时间为4.5分钟,功率为30%(360 W),样品水比为5 g / 100 mL。在这些条件下,可以用45 mg / g的TPC,29 mg RUE / g的澳洲坚果干燥皮肤制成类黄酮提取物。

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