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The use of dynamic vapour sorption methods for the characterisation of water uptake in amorphous trehalose

机译:动态蒸气吸附法用于表征无定形海藻糖中水分的吸收

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Water uptake by amorphous sugars is an issue of high importance for the food and pharmaceutical industries. However, while the processes associated with sorption-induced crystallisation have been widely studied, little is known regarding the uptake mechanisms associated with pre-crystallisation water levels. In the present investigation we use dynamic vapour sorption to study the water uptake mechanisms associated with amorphous trehalose. More specifically, we have prepared spray-dried amorphous trehalose with three initial water contents and studied water uptake as a function of time and relative humidity. We model the data obtained prior to crystallisation and suggest two mechanisms that are based on Type II diffusion (using the Peleg equation), which predominates under high humidity conditions (50% RH and above), while we use a Type I Fickian diffusion expression to model uptake under low relative humidity conditions (40% RH and below). The model allows prediction of equilibrium sorption values which correlate well with previously published data calculated from equilibrium vapour pressure data. We also note that the water content following recrystallisation is greater than that predicted by the stoichiometric ratio. A novel model is suggested whereby recrystallisation onset times may be estimated from the vapour sorption data. In conclusion the study has demonstrated that pre-crystallisation water sorption may be associated with two mechanisms depending on the humidity conditions and that such modelling allows insights into both the mechanisms of uptake and the storage behaviour of amorphous sugar samples.
机译:无定形糖的吸水对于食品和制药工业而言是非常重要的问题。然而,尽管已经广泛研究了与吸附诱导的结晶相关的过程,但是对于与预结晶水位相关的吸收机理知之甚少。在本研究中,我们使用动态蒸气吸附来研究与无定形海藻糖相关的吸水机理。更具体地说,我们制备了具有三个初始水含量的喷雾干燥无定形海藻糖,并研究了水吸收随时间和相对湿度的变化。我们对结晶之前获得的数据进行建模,并提出了两种基于II型扩散(使用Peleg方程)的机理,该机理主要在高湿度条件下(相对湿度50%以上)使用,而我们使用I型Fickian扩散表达式低相对湿度条件(40%RH和以下)下的模型摄取。该模型可以预测平衡吸附值,该值与以前根据平衡蒸汽压数据计算出的数据很好地相关。我们还注意到,重结晶后的水含量大于化学计量比预测的水含量。提出了一种新颖的模型,由此可以从蒸气吸附数据估计重结晶开始时间。总之,研究表明,取决于湿度条件,预结晶水的吸收可能与两种机理有关,并且这种模型可以洞察无定形糖样品的吸收机理和存储行为。

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