Elution Behavior of Carbohydrates for Core-Shell Ion-Exchange Resin St-60 with Different Degrees of Cross-Linking in the Porous Shell

Shun-ichi Mitomo, Takashi Tanikawa, Yutaka Inoue
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Abstract

A novel core-shell ion-exchange resin (St-60) at a fixed core:shell monomer weight ratio of 40:60 and different degrees of cross-linking (10% and 40%) in the porous shell was prepared. The effect of cross-linking degree (10–55%) for these resins and St-60 (55%) in the porous shell on the separation of carbohydrates was examined under strong alkaline conditions. A mixture of inositol, glucose, fructose, and sucrose was separated using 0.10 or 0.15 mol/L NaOH eluent at flow rates of 0.3–0.7 mL/min. The retention times of glucose, fructose, and sucrose on St-60 (40% and 50% degrees of cross-linking) were shorter than those on the fully porous resin (55% degree of cross-linking). The retention times of these carbohydrates increased as the degree of cross-linking in the porous shell decreased. The theoretical plate number for glucose and sucrose also increased as the degree of cross-linking decreased.
多孔壳不同交联度核壳离子交换树脂St-60对碳水化合物的洗脱行为
制备了一种新型核壳离子交换树脂St-60,其核壳单体质量比为40:60,在多孔壳中不同程度的交联(10%和40%)。在强碱性条件下,考察了树脂交联度(10-55%)和多孔壳中St-60(55%)对碳水化合物分离的影响。使用0.10或0.15 mol/L NaOH洗脱液,流速为0.3-0.7 mL/min,分离肌醇、葡萄糖、果糖和蔗糖的混合物。葡萄糖、果糖和蔗糖在St-60树脂(交联度为40%和50%)上的滞留时间比在全孔树脂(交联度为55%)上的滞留时间短。这些碳水化合物的滞留时间随着多孔壳中交联程度的降低而增加。葡萄糖和蔗糖的理论盘子数也随着交联程度的降低而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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