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某些碳水化合物水溶液中粘度和自扩散系数的c、T依赖性。

c,T-dependence of the viscosity and the self-diffusion coefficients in some aqueous carbohydrate solutions.

作者信息

Rampp M, Buttersack C, Lüdemann H D

机构信息

Universität Regensburg, Institut für Biophysik und Physikalische Biochemie, Germany.

出版信息

Carbohydr Res. 2000 Oct 6;328(4):561-72. doi: 10.1016/s0008-6215(00)00141-5.

Abstract

Self-diffusion coefficients for both components are reported for the highly concentrated aqueous solutions of some disaccharides and fructose as a function of temperature and concentration. These data are complemented by viscosity measurements. The disaccharides studied are sucrose, alpha,alpha-trehalose, allosucrose, and leucrose. Up to a sugar concentration of approximately 30% w/w the viscosity and the self diffusion coefficients of the four disaccharides are identical within experimental error for a given concentration and temperature. Water diffusion shows no differences in the four systems studied under these conditions. At higher concentrations significant differences are observed that become more pronounced with increasing temperature. Analysis of the data by the VTF equation yields the result that at a given concentration the self diffusion coefficients of the sugar Dc and the viscosity eta are described by identical ideal glass transition temperatures T0, while the diffusion of the water D(W) molecule decouples from these properties. T0(W) is always lower than T0(c,eta).

摘要

报道了某些二糖和果糖的高浓度水溶液中两种组分的自扩散系数随温度和浓度的变化情况。这些数据通过粘度测量得到补充。所研究的二糖有蔗糖、α,α-海藻糖、别蔗糖和异麦芽糖。在糖浓度约为30% w/w以下时,对于给定的浓度和温度,四种二糖的粘度和自扩散系数在实验误差范围内是相同的。在这些条件下,所研究的四个体系中的水扩散没有差异。在较高浓度下,观察到显著差异,且随着温度升高差异更加明显。通过VTF方程对数据进行分析得出的结果是,在给定浓度下,糖的自扩散系数Dc和粘度η由相同的理想玻璃化转变温度T0描述,而水分子的扩散D(W)与这些性质解耦。T0(W)总是低于T0(c,η)。

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