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GLASS FORMATION DURING ROOM TEMPERATURE, ISOTHERMAL DRYING

机译:室温下的玻璃形成,等温干燥

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Isothermal drying and glass transition of solutions and films have drawn considerable attention from many industries. We here explore the feasibility of modifying the isothermal drying and vitrification kinetics of carbohydrate solutions in order to ensure the stability and quality of their ingredients. Modulated Differential Scanning Calorimetry experiments with isothermally dried trehalose and trehalose/dextran solutions were performed and the glass transition kinetics have been determined. Three distinct drying regimes were observed. With isothermal, isobaric drying at 0%RH, it was indeed possible to reach the glassy state for a trehalose and a trehalose-dextran system. With the addition of high molecular weight sugars, the glass transitions of isothermally dried carbohydrate solutions can be accelerated as a function of dextran mass ratio in the sample.
机译:等温干燥和溶液的溶液和薄膜的转变从许多行业都造成了相当大的关注。我们在这里探讨改变碳水化合物解决方案等温干燥和玻璃化动力学的可行性,以确保其成分的稳定性和质量。进行调制差分扫描热量实验,采用等温干燥的海藻糖和海藻糖/葡聚糖溶液,已经确定了玻璃化转变动力学。观察到三个不同的干燥制度。在0%RH下具有等温的,同样干燥,确实可以达到海藻糖和海藻糖 - 葡聚糖系统的玻璃状状态。随着高分子量糖的添加,可以根据样品中的葡聚糖质量比的函数加速等温干燥的碳水化合物溶液的玻璃化转变。

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