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Assessment of saccharide fractionation by ultrafiltration and nanofiltration

机译:通过超滤和纳滤评估糖分馏

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摘要

This paper addresses the investigation of the fractionation of saccharide mixtures and saccharide mixtures with calcium using ultrafiltration (UF) and nanofiltration (NF). A set of cellulose acetate membranes covered a wide range of molecular weight cut-off (MWCO) ranging from 250 to 46,000 Da and the total feed concentration of saccharides mixtures varied from 1550 to 4700 ppm with the ratio of the two saccharides-solutes (glucose to raffinose) being kept constant at the value of 1.8. The evolution pattern of the saccharide concentration ratio in the UF/NF permeate streams displayed a dependence on the membrane MWCO, on the total sugar concentration and on the presence of calcium ions. For the highest total sugar content, the membranes with MWCO from 2000 to 7000 Da showed saccharide fractionation capability that was enhanced in the presence of calcium. The Steric Pore Flow Model was used to predict individual solute permeation behaviours and to assess the deviations to steric hindered transport of the solutes in multi-component saccharide solutions. (C) 2008 Elsevier B.V. All rights reserved.
机译:本文探讨了使用超滤(UF)和纳滤(NF)分离糖混合物和含钙糖混合物的研究。一组醋酸纤维素膜的截留分子量范围(MWCO)为250至46,000 Da,糖类混合物的总进料浓度为1550至4700 ppm,其中两种糖类-溶质(葡萄糖棉子糖)保持恒定在1.8的值。 UF / NF渗透物​​流中糖类浓度比的演变模式显示出对膜MWCO,总糖浓度和钙离子存在的依赖性。对于最高的总糖含量,分子量从2000到7000 Da的MWCO膜显示糖分馏能力在存在钙的情况下得到增强。 Steric孔流动模型用于预测单个溶质的渗透行为,并评估在多组分糖溶液中溶质的空间位阻迁移的偏差。 (C)2008 Elsevier B.V.保留所有权利。

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