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Development of a phase-change material for heat storage in gypsum-based building materials

机译:基于石膏的建筑材料中的热储存相变材料的研制

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The aim of this study was to develop a new phase-change material (PCM) for thermal energy storage (TES) in gypsum-based building materials. Expanded vermiculite was used as a base for a coconut oil (CtO)-vermiculite composite PCM. The maximum mass ratio of CtO retained in the vermiculate was found to be 27% for the best particle-size distribution of the vermiculite. The results showed that there were only physical interactions between oil and vermiculite in the composite. The melting temperature and latent heat of the composite were measured as 22.29 degrees C and 24.21 J/g, respectively. Thermal cycling tests showed that there was no significant change in thermal property of the composite after 1000 thermal cycles. A gypsum-based heat-storage material was prepared by mixing the composite with gypsum. The thermal properties, compressive strength and water adsorption of the gypsum-composite mix were then measured. The results showed that the composite could be considered as a promising PCM in gypsum-based building materials for TES applications. This is due to its satisfactory physical, mechanical and thermal properties and good thermal reliability and chemical stability.
机译:本研究的目的是在基于石膏的建筑材料中开发一种用于热能储存(TES)的新的相变材料(PCM)。将膨胀的蛭石用作椰子油(CTO) - vermiCulite复合PCM的碱。发现蠕变中保留在蠕虫中的最大质量比为蛭石最佳粒度分布的27%。结果表明,复合材料中的油和蛭石之间的物理相互作用。分别测量复合材料的熔化温度和潜热,分别为22.29℃和24.21J / g。热循环试验表明,在1000个热循环后复合材料的热性能没有显着变化。通过将复合材料与石膏混合来制备基于石膏的蓄热材料。然后测量石膏复合材料混合物的热性能,抗压强度和水吸附。结果表明,复合材料可被认为是用于TES应用的基于石膏的建筑材料中的有前途的PCM。这是由于其令人满意的物理,机械和热性能以及良好的热可靠性和化学稳定性。

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