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Separation of Fructose and Glucose via Nanofiltration in Presence of Fructooligosaccharides

机译:在果糖寡糖存在下纳米滤液的果糖和葡萄糖的分离

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摘要

Fructose and glucose are commonly present together in mixtures and may need to be separated. Current separation methods for these isomers are complex and costly. Nanofiltration is a cost-effective method that has been widely used for separating carbohydrates of different sizes; however, it is not commonly used for such similar molecules. Here, we report the separation of fructose and glucose in a nanofiltration system in the presence of fructooligosaccharides (FOS). Experiments were performed using a pilot-scale filtration setup using a spiral wound nanofiltration membrane with molecular weight cutoff of 1 kDa. We observed three important factors that affected the separation: (1) separation of monosaccharides only occurred in the presence of FOS and became more effective when FOS dominated the solution; (2) better separation was achieved when the monosaccharides were mainly fructose; and (3) the presence of salt improved the separation only moderately. The rejection ratio (Rf/Rg) in a fructose/glucose mixture is 0.92. We reported a rejection ratio of 0.69, which was observed in a mixture of 50 g/L FOS with a fructose to glucose ratio of 4.43. The separation is hypothesized to occur due to selective transport in the FOS layer, resulting in a preferential binding towards fructose.
机译:果糖和葡萄糖通常存在于混合物中,并且可能需要分离。这些异构体的电流分离方法复杂且昂贵。纳滤是一种经济型方法,已广泛用于分离不同尺寸的碳水化合物;然而,它不常用于这种类似的分子。在此,我们在寡糖(FOS)存在下报告纳米滤膜系统中的果糖和葡萄糖的分离。使用具有1kDa的分子量截止的螺旋缠绕的纳滤膜进行试验型纳米过滤膜进行实验。我们观察了影响分离的三个重要因素:(1)单糖的分离仅在FOS存在下发生,并且当FOS主导溶液时变得更有效; (2)当单糖主要是果糖时,实现了更好的分离; (3)盐的存在仅适度地改善了分离。果糖/葡萄糖混合物中的排斥比(RF / RG)为0.92。我们报道了抑制比为0.69,以50g / l FOS的混合物观察到糖果为4.43的混合物。假设分离是由于FOS层中选择性传输而发生的,导致对果糖的优先结合。

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