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Recovery of Isoflavone Aglycones from Soy Whey Wastewater Using Foam Fractionation and Acidic Hydrolysis

机译:泡沫分馏和酸性水解从大豆乳清废水中回收异黄酮苷元

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摘要

The purpose of this work was to recover isoflavone aglycones from industrial soy whey wastewater, where the isoflavone aglycones mainly existed in the form of β-glycosides. First, foam fractionation was used for effectively concentrating the total soy isoflavones, including isoflavone aglycones and β-glycosides, from the wastewater. Fourier transform infrared spectroscopy indicated the existence of complexes of soy isoflavones and soy proteins. When soy proteins were used as the collectors, a high enrichment ratio of 3.68 was obtained under the optimal operating conditions of temperature of 50 °C, pH of 5.0, volumetric air flow rate of 100 mL/min, and loading liquid height of 400 mm. Subsequently, acidic hydrolysis was used for hydrolyzing β-glycosides in the foamate into aglycones. Using response surface methodology, a hydrolytic percentage could reach 96% under the optimum hydrolysis conditions of hydrolytic temperature of 80 °C, hydrochloric acid concentration of 1.37 mol/ L, and hydrolytic time of 90 min.
机译:这项工作的目的是从工业大豆乳清废水中回收异黄酮苷元,其中异黄酮苷元主要以β-糖苷的形式存在。首先,使用泡沫分离法从废水中有效浓缩总大豆异黄酮,包括异黄酮苷元和β-糖苷。傅立叶变换红外光谱表明大豆异黄酮和大豆蛋白存在复合物。当使用大豆蛋白作为收集剂时,在最佳操作条件下,温度为50°C,pH为5.0,空气体积流量为100 mL / min,装载液体高度为400 mm,最佳富集比为3.68。 。随后,使用酸性水解将泡沫塑料中的β-糖苷水解为糖苷配基。采用响应面法,在80℃的水解温度,1.37mol / L的盐酸浓度,90分钟的水解时间的最佳水解条件下,水解率可达96%。

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