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利用集成膜工艺对朝鲜蓟废水进行增值处理。

Valorization of artichoke wastewaters by integrated membrane process.

机构信息

Institute on Membrane Technology, ITM-CNR, c/o University of Calabria, via P. Bucci, 17/C, I-87030 Rende, Cosenza, Italy.

出版信息

Water Res. 2014 Jan 1;48:363-74. doi: 10.1016/j.watres.2013.09.047. Epub 2013 Oct 6.

Abstract

In this work an integrated membrane system was developed on laboratory scale to fractionate artichoke wastewaters. In particular, a preliminary ultrafiltration (UF) step, based on the use of hollow fibre membranes, was investigated to remove suspended solids from an artichoke extract. The clarified solution was then submitted to a nanofiltration (NF) step. Two different 2.5 × 21 in. spiral-wound membranes (Desal DL and NP030) with different properties were investigated. Both membranes showed a high rejection towards the phenolic compounds analysed (chlorogenic acid, cynarin and apigenin-7-O-glucoside) and, consequently, towards the total antioxidant activity (TAA). On the other hand, the Desal DL membrane was characterized by a high rejection towards sugar compounds (glucose, fructose and sucrose) (100%) when compared with the NP030 membrane (4.02%). The performance of selected membranes in terms of permeate flux, fouling index and water permeability recovery was also evaluated. On the base of experimental results, an integrated membrane process for the fractionation of artichoke wastewaters was proposed. This conceptual process design permitted to obtain different valuable products: a retentate fraction (from the NP030 membrane) enriched in phenolic compounds suitable for nutraceutical, cosmeceutical or food application; a retentate fraction (from the Desal DL membrane), enriched in sugar compounds, of interest for food applications; a clear permeate (from the Desal DL membrane) which can be reused as process water or for membrane cleaning.

摘要

在这项工作中,开发了一种集成膜系统,在实验室规模上对朝鲜蓟废水进行分级。特别是,研究了初步的超滤(UF)步骤,该步骤基于使用中空纤维膜,以从朝鲜蓟提取物中去除悬浮固体。然后将澄清的溶液进行纳滤(NF)步骤。研究了两种不同的 2.5×21 英寸螺旋缠绕膜(Desal DL 和 NP030),它们具有不同的性能。两种膜对分析的酚类化合物(绿原酸、水飞蓟宾和芹菜素-7-O-葡萄糖苷)和总抗氧化活性(TAA)均表现出很高的截留率。另一方面,与 NP030 膜(4.02%)相比,Desal DL 膜对糖化合物(葡萄糖、果糖和蔗糖)的截留率很高(100%)。还评估了所选膜在渗透通量、污染指数和水渗透性恢复方面的性能。根据实验结果,提出了一种用于朝鲜蓟废水分级的集成膜工艺。该概念性工艺设计允许获得不同有价值的产品:一种富含有益于营养保健品、化妆品或食品应用的酚类化合物的浓缩物(来自 NP030 膜);一种富含有益于食品应用的糖化合物的浓缩物(来自 Desal DL 膜);一种清澈的渗透物(来自 Desal DL 膜),可重复用作工艺水或用于膜清洗。

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