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Thermal and Stability Investigation of Phase Change Material Dispersions for Thermal Energy Storage by T-History and Optical Methods

机译:T历史和光学方法研究相变材料分散体用于热能存储的热稳定性

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Glauber’s salt (sodium sulphate decahydrate) is a promising phase change material (PCM) for use in the building sector, thanks to its high enthalpy of fusion associated with a proper phase transition temperature. It also offers economic and environmental advantages because it can be obtained as a byproduct from the disposal process of lead batteries. However, due to phenomena of phase segregation and supercooling, Glauber’s salt cannot be used in its pure state and requires the addition of rheological modifiers and nucleating agents. In this work, the initial thermal performances of mixtures based on Glauber’s salt with different compositions are compared by using the T-history method and adopting sonication for mixing, and following the same preparation procedure for all the samples. With fixed composition, the effects of the addition sequence of the reagents are also examined. The analysis carried out by optical methods based on light scattering (Turbiscan equipment) allowed us to identify the kinetics of destabilization for each sample and revealed the need to specify in detail the preparation stages of PCMs, in order to make the composition reproducible in the laboratory and on a wider scale.
机译:芒硝的十水合硫酸钠是一种很有前途的相变材料(PCM),因为它具有很高的熔融焓和适当的相变温度,因此可用于建筑领域。由于它可以作为铅电池处置过程中的副产品获得,因此它还具有经济和环境优势。但是,由于相分离和过冷现象,格劳伯盐不能以其纯净状态使用,需要添加流变改性剂和成核剂。在这项工作中,使用T历程法并采用超声处理进行混合,并对所有样品遵循相同的制备步骤,比较了具有不同成分的基于芒硝的混合物的初始热性能。对于固定的组成,还检查了试剂添加顺序的影响。通过基于光散射的光学方法(Turbiscan设备)进行的分析使我们能够确定每个样品的失稳动力学,并揭示了需要详细说明PCM的制备阶段,以使该组合物在实验室中可再现的问题并在更大范围内。

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