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Nanofiltration and Tight Ultrafiltration Membranes for the Recovery of Polyphenols from Agro-Food By-Products

机译:纳滤和密封的超滤膜,用于从农业食品副产品中回收多酚

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摘要

Pressure-driven membrane-based technologies represent a valid approach to reduce the environmental pollution of several agro-food by-products. Recently, in relation to the major interest for natural compounds with biological activities, their use has been also addressed to the recovery, separation and fractionation of phenolic compounds from such by-products. In particular, tight ultrafiltration (UF) and nanolfiltration (NF) membranes have been recognized for their capability to recover phenolic compounds from several types of agro-food by-products. The separation capability of these membranes, as well as their productivity, depends on multiple factors such as membrane material, molecular weight cut-off (MWCO) and operating conditions (e.g., pressure, temperature, feed flow rate, volume reduction factor, etc.). This paper aims at providing a critical overview of the influence of these parameters on the recovery of phenolic compounds from agro-food by-products by using tight UF and NF membranes. The literature data are analyzed and discussed in relation to separation processes, molecule properties, membrane characteristics and other phenomena occurring in the process. Current extraction methodologies of phenolic compounds from raw materials are also introduced in order to drive the implementation of integrated systems for the production of actractive phenolic formulations of potential interest as food antioxidants.
机译:压力驱动的基于膜的技术代表了一种减少几种农业食品副产品的环境污染的有效方法。最近,在与生物活性的天然化合物的主要兴趣相关,它们的使用也已经解决了来自这些副产物的酚类化合物的回收率,分离和分离。特别地,已经认识到紧密的超滤(UF)和南路(NF)膜的能力,以回收来自几种农业食品副产物的酚类化合物。这些膜的分离能力以及它们的生产率取决于膜材料,分子量截止(MWCO)和操作条件(例如,压力,温度,进料流速,体积减少系数等多种因素。 )。本文旨在通过使用紧密的UF和NF膜来提供这些参数对来自农业食品副产物的酚类化合物的影响的关键概述。分析和讨论了在该过程中发生的分离过程,分子性质,膜特征和其他现象的分析和讨论的文献数据。还引入了来自原料的酚类化合物的电流萃取方法,以驱动综合系统的实施,以生产潜在利息作为食品抗氧化剂。

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