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使用大孔树脂从烤榛子皮提取物中回收和浓缩多酚

Recovery and Concentration of Polyphenols from Roasted Hazelnut Skin Extract Using Macroporous Resins.

作者信息

Seif Zadeh Negin, Zeppa Giuseppe

机构信息

Department of Agriculture, Forest and Food Sciences (DISAFA), University of Turin, 10095 Grugliasco, Italy.

出版信息

Foods. 2022 Jul 2;11(13):1969. doi: 10.3390/foods11131969.

Abstract

Hazelnut skin is a rich source of polyphenols but is generally discarded during the roasting process of hazelnuts. Previous studies reported the extraction and identification of these compounds using different solvents and procedures; however, there are few reports on their enrichment and purification. In this study, three types of Amberlite macroporous resins (XAD 16, XAD 4, and XAD 7) were compared to evaluate the enrichment of polyphenols via adsorption and desorption mechanisms. The operating condition parameters for polyphenol adsorption/desorption of each resin were determined, the kinetics of adsorption were examined, and a method for polyphenol recovery was developed using static and dynamic adsorption/desorption. Antioxidant activity and high-performance liquid chromatography-diode array detection were used to confirm the increase in polyphenols obtained using the adsorption/desorption technique. XAD16 showed the highest adsorption capacity, with a recovery of 87.7%, and the adsorption kinetics fit well with a pseudo-second-order model. The highest poly-phenol desorption ratio was observed using an ethanol/water solution (70% /) at a flow rate of 1.5 bed volume/h.

摘要

榛子皮是多酚的丰富来源,但在榛子烘焙过程中通常被丢弃。先前的研究报道了使用不同溶剂和方法对这些化合物进行提取和鉴定;然而,关于它们的富集和纯化的报道却很少。在本研究中,比较了三种类型的Amberlite大孔树脂(XAD 16、XAD 4和XAD 7),以评估通过吸附和解吸机制对多酚的富集情况。确定了每种树脂对多酚吸附/解吸的操作条件参数,研究了吸附动力学,并采用静态和动态吸附/解吸开发了一种多酚回收方法。利用抗氧化活性和高效液相色谱-二极管阵列检测来确认通过吸附/解吸技术获得的多酚含量的增加。XAD16表现出最高的吸附容量,回收率为87.7%,吸附动力学与伪二级模型拟合良好。在流速为1.5床体积/小时的条件下,使用乙醇/水溶液(70%/)观察到最高的多酚解吸率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db1e/9265773/0e9752d76159/foods-11-01969-g001.jpg

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