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克劳修斯-克拉佩龙方程的扩展,用于预测不同温度下的水合物稳定性。

Extension of Clausius-Clapeyron equation to predict hydrate stability at different temperatures.

作者信息

Chen L R, Grant D J

机构信息

Department of Pharmaceutics, College of Pharmacy, University of Minnesota, Minneapolis 55455-0343, USA.

出版信息

Pharm Dev Technol. 1998 Nov;3(4):487-94. doi: 10.3109/10837459809028630.

Abstract

The objectives of this study were to verify theoretically and experimentally that the Clausius-Clapeyron equation can be applied to a hydrate system, and to use this equation to predict the equilibrium water activity for a hydrate pair existing in equilibrium at different temperatures for the determination of the ranges of hydrate stability. The Clausius-Clapeyron equation was derived for hydrate systems by assuming (a) the higher and the lower hydrates exist in equilibrium with water vapor as three pure phases; and (b) the overall volume change involved in this equilibrium process is approximated by the volume of the released water vapor, which behaves ideally. The equilibrium water vapor pressure at different temperatures for the nedocromil sodium monohydrate and trihydrate system was determined dynamically using a thermogravimetric analyzer with an attached water vapor delivery system. The enthalpy of dehydration obtained by applying the Clausius-Clapeyron equation to the experimentally determined equilibrium water vapor pressures is in fair agreement with the enthalpy of dehydration derived from differential scanning calorimetry (13.7 +/- 0.6 kcal/mol of water loss, n = 5), indicating that the Clausius-Clapeyron equation can indeed be applied to organic hydrate systems. The application of the Clausius-Clapeyron equation to predict the hydrate stability under various conditions is also discussed.

摘要

本研究的目的是从理论和实验两方面验证克劳修斯 - 克拉佩龙方程可应用于水合物体系,并利用该方程预测在不同温度下处于平衡状态的水合物对的平衡水活度,以确定水合物稳定性范围。克劳修斯 - 克拉佩龙方程是通过假设(a)高低水合物与水蒸气作为三个纯相处于平衡状态;以及(b)该平衡过程中涉及的总体积变化近似为理想行为的释放水蒸气的体积,从而推导得出水合物体系的方程。使用配备水蒸气输送系统的热重分析仪动态测定了奈多罗米钠一水合物和三水合物体系在不同温度下的平衡水蒸气压力。将克劳修斯 - 克拉佩龙方程应用于实验测定的平衡水蒸气压力所得到的脱水焓,与差示扫描量热法得出的脱水焓(每失水13.7±0.6千卡/摩尔,n = 5)相当吻合,这表明克劳修斯 - 克拉佩龙方程确实可应用于有机水合物体系。还讨论了应用克劳修斯 - 克拉佩龙方程预测各种条件下水合物稳定性的情况。

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