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Liquid-solid phase equilibrium study of tetradecane and hexadecane binary mixtures as phase change materials (PCMs) for comfort cooling storage

机译:十四烷和十六烷二元混合物作为相变材料(PCM)用于舒适冷却存储的液固相平衡研究

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摘要

Phase diagrams (equilibrium diagrams) are a convenient way of depicting the concentration-temperature-pressure relationships of a chemical system at equilibrium. They are invaluable to PCMs thermal storage researches and developers. In the present paper, the liquid-solid phase equilibrium of binary mixture system of tetradedcane and hexadecane has been studied. For theoretical evaluation of the thermodynamic equilibrium between the liquid phase and solid phase of tetradecane and hexadecane, several methods were compared: the UNIFAC group-contribution method, the model of Won, and Pedersen's model. The temperature-composition phase diagram of the binary system has been obtained by the calculation. The diagram illustrates a binary, isomorphous system with a temperature minimum. Differential scanning calorimetry (DSC) was used to study the phase transformation of the binary system. DSC was run at different ramp rates and results indicate that these mixtures melt and freeze over a temperature range and the temperature range depends on the DSC ramp rate, and in a short mixture concentration interval appears low temperature solid-solid peaks. From the DSC results presented, it is concluded that the behaviour of binary mixtures of n-alkanes is far more complicated than considered in earlier studies. The phase diagram and all information from DSC are very important for designing PCM storage system. (C) 2003 Elsevier B.V. All rights reserved. [References: 19]
机译:相图(平衡图)是描述处于平衡状态的化学系统的浓度-温度-压力关系的便捷方法。它们对于PCM的热存储研究和开发人员来说是无价的。本文研究了十四烷与十六烷二元混合物体系的固液平衡。为了对十四烷和十六烷的液相和固相之间的热力学平衡进行理论评估,比较了几种方法:UNIFAC基团贡献法,Won模型和Pedersen模型。通过计算得到了二元体系的温度组成相图。该图说明了具有最低温度的二元同构系统。差示扫描量热法(DSC)用于研究二元体系的相变。 DSC以不同的升温速率运行,结果表明这些混合物在一个温度范围内融化并冻结,温度范围取决于DSC升温速率,并且在较短的混合物浓度间隔内出现低温固-固峰。从给出的DSC结果可以得出结论,正构烷烃的二元混合物的行为比以前的研究要复杂得多。相图和来自DSC的所有信息对于设计PCM存储系统非常重要。 (C)2003 Elsevier B.V.保留所有权利。 [参考:19]

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