首页> 外文期刊>Journal of Agricultural and Food Chemistry >Determination of maltitol, isomaltitol, and lactitol by high-pH anion-exchange chromatography with pulsed amperometric detection.
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Determination of maltitol, isomaltitol, and lactitol by high-pH anion-exchange chromatography with pulsed amperometric detection.

机译:通过高pH阴离子交换色谱-脉冲安培检测法测定麦芽糖醇,异麦芽糖醇和乳糖醇。

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Disaccharide alditols (DAs) such as maltitol, isomaltitol, and lactitol are increasingly being employed in food industry by virtue of their low hydroscopicity, high stability, and good bulking properties. Still, these compounds are reduced-calorie sweeteners, so they are successfully employed in many dietetic foods, like candies, chocolates, baked products, ice creams, and beverages. Here we describe the determination of maltitol, isomaltitol, and lactitol, along with other common carbohydrates, in some foodstuffs such as toffees, biscuits, creams, sponge cakes, chocolates, roasted malt, and chicory leaves. Separations were accomplished by high-pH anion-exchange chromatography (HPAEC) with pulsed amperometric detection using 40 mM NaOH + 1 mM Ba(CH(3)COO)(2) as the mobile phase. The optimal detection potential (E(DET) = +0.10 V) was established in voltammetric experiments carried out in batch and flowing stream solutions. Under optimized conditions there was no need for both postcolumn addition of strong bases to the eluent and, even more important, column regeneration between runs. A pellicular column with a relatively low ion-exchange capacity was adopted, which allows a rapid separation of sorbitol, isomaltitol, lactitol, maltitol, glucose, fructose, sucrose, and lactose. The presence in the alkaline mobile phase of barium ions improved selectivity and reproducibility besides shorter analysis times as well. Limits of detection were on the order of 10-20 pmol injected. The contents of DAs and other free sugars in some dietetic foods were evaluated by calibration graphs.
机译:二糖醛糖醇(DAs),如麦芽糖醇,异麦芽糖醇和乳糖醇,由于其低吸湿性,高稳定性和良好的膨松性而越来越多地用于食品工业。这些化合物仍然是低热量的甜味剂,因此它们已成功用于许多营养食品中,例如糖果,巧克力,烘焙产品,冰淇淋和饮料。在这里,我们描述了在某些食品(例如太妃糖,饼干,奶油,海绵蛋糕,巧克力,烤麦芽和菊苣叶)中麦芽糖醇,异麦芽糖醇和乳糖醇以及其他常见碳水化合物的测定。分离通过使用40 mM NaOH + 1 mM Ba(CH(3)COO)(2)作为流动相的脉冲安培检测的高pH值阴离子交换色谱(HPAEC)完成。最佳检测电势(E(DET)= +0.10 V)是在分批和流动溶液中进行的伏安实验中确定的。在优化的条件下,既不需要在柱后向洗脱液中添加强碱,也不需要在运行之间进行柱再生。采用离子交换能力相对较低的防护膜柱,可快速分离山梨糖醇,异麦芽糖醇,乳糖醇,麦芽糖醇,葡萄糖,果糖,蔗糖和乳糖。钡离子在碱性流动相中的存在,不仅缩短了分析时间,而且还提高了选择性和重现性。检测限为注入的10-20pmol量级。通过校准图评估了某些减肥食品中DA和其他游离糖的含量。

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