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Modelling viscosity temperature dependence of supercooled sucrose solutions - The random-walk approach

机译:过冷蔗糖溶液的粘度温度依赖性建模-随机游走法

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摘要

Sucrose and its supersaturated or supercooled solutions are of the utmost importance in areas as different as food and pharmaceutical industries or cryopreservation of biological systems. In the supercooled "state", such amorphous solutions are fragile systems, presenting extremely high viscosity with decreased mobility of molecules, impairing experimental determinations at low temperatures (below critical temperature, T-c). This work proposes the random walk (RW) approach to study relaxation behavior in the supercooled melt, using only viscosity data at temperatures above T-c. For comparison purposes, the Vogel-Fulcher-Tamman (VFT) model was fitted to th data. The random walk approach is based on the distribution of molecular energies, thus having a theoretical support not found in the VFT model. The RW estimated parameters can be correlated with system characteristics, showing their dependence on water content or sucrose concentration. RW and VFT model description was evaluated from the mathematical and physical points of view, but the random walk model led to more consistent regression results and parameter estimates with improved precision.
机译:蔗糖及其过饱和或过冷溶液在食品和制药行业或生物系统的低温保存等领域都至关重要。在过冷的“状态”下,这种无定形溶液是易碎的系统,具有极高的粘度,分子的迁移率降低,从而损害了低温下(低于临界温度T-c)的实验测定。这项工作提出了一种仅使用T-c以上温度的粘度数据来研究过冷熔体中松弛行为的随机游走(RW)方法。为了进行比较,将Vogel-Fulcher-Tamman(VFT)模型拟合到数据。随机游走方法基于分子能量的分布,因此具有在VFT模型中找不到的理论支持。 RW估计参数可以与系统特性相关,显示其对水分或蔗糖浓度的依赖性。 RW和VFT模型的描述是从数学和物理角度进行评估的,但随机游走模型可带来更一致的回归结果和参数估计,且精度更高。

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