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Characterization of MgCl2·6H2O-Based Eutectic/Expanded Perlite Composite Phase Change Material with Low Thermal Conductivity

机译:低导热系数的MgCl2·6H2O基共晶/膨胀珍珠岩复合相变材料的表征

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摘要

The melting points of the phase change materials (PCMs) incorporated into the walls of buildings should be within the human thermal comfort temperature range. In this paper, 15 wt.% of MgCl2·6H2O was mixed with CaCl2·6H2O to obtain the eutectic with a melting point of 23.9 °C. SrCl2·6H2O suppresses the supecooling of the eutectic. The combination with expanded perlite (EP) via the impregnation method overcomes the phase separation and liquid leakage of the CaCl2∙6H2O-MgCl2∙6H2O mixture. The composite PCM is form-stable with the maximum loading mass fraction up to 50 wt.% and latent heat of 73.55 J/g. EP also significantly reduces the thermal conductivity of the CaCl2∙6H2O-MgCl2∙6H2O from 0.732 to 0.144 W/(m·K). The heating-cooling cycling test reveals that the composite PCM is thermally stable. The cheap eutectic salt hydrate, with little supercooling, no phase separation and liquid leakage, low thermal conductivity and good thermal reliability, show great potential as envelope materials to save energy consumption in buildings.
机译:纳入建筑物墙壁的相变材料(PCM)的熔点应在人体热舒适温度范围内。在本文中,将15 wt。%的MgCl2·6H2O与CaCl2·6H2O混合以获得熔点为23.9°C的低共熔物。 SrCl2·6H2O抑制了共晶的过冷。通过浸渍法与膨胀珍珠岩(EP)的结合克服了CaCl2∙6H2O-MgCl2∙6H2O混合物的相分离和液体泄漏。复合材料PCM形状稳定,最大负载质量分数高达50 wt。%,潜热为73.55 J / g。 EP还可以将CaCl2∙6H2O-MgCl2∙6H2O的热导率从0.732降低到0.144 W /(m·K)。加热-冷却循环测试表明复合PCM是热稳定的。廉价的低共熔盐水合物,具有很少的过冷度,无相分离和漏液,低导热性和良好的热可靠性,具有巨大的潜力,可作为围护材料来节省建筑物的能源消耗。

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