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Stearic Acid/Inorganic Porous Matrix Phase Change Composite for Hot Water Systems

机译:热水系统用硬脂酸/无机多孔基相变复合材料

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摘要

The storage and utilization of waste heat in low and medium temperature ranges using phase change materials (PCMs) is an effective technology to improve energy utilization efficiency in combined cooling, heating, and power (CCHP) systems. In this paper, stearic acid/inorganic porous matrix phase change composites were developed to store waste heat for hot water systems. Among them, stearic acid/expanded graphite (EG) phase change composite was highlighted and the thermal physical properties, the dynamic response, and the long-term cyclic stability were evaluated. The stearic acid concentrations in the composites were over 95 wt%. The thermal diffusion coefficients were 3–5 times higher than pure stearic acid, independent of composite densities. Accordingly, the heat storage and release times were decreased by up to 41% and 55%, respectively. After 100 cycles, the composites maintained good dynamic response and long-term cyclic stability, with heat storage density of 122–152 MJ/m3. Hence, this stearic acid/EG phase change composite exhibits excellent comprehensive performances. It is also easy to be prepared and flexible for various types of heat exchangers.
机译:使用相变材料(PCM)在中低温度范围内存储和利用废热是一种有效的技术,可以提高冷却,加热和动力(CCHP)组合系统中的能源利用效率。在本文中,开发了硬脂酸/无机多孔基质相变复合材料来存储热水系统的废热。其中,突出显示了硬脂酸/膨胀石墨(EG)相变复合材料,并评估了其热物理性质,动态响应和长期循环稳定性。复合材料中的硬脂酸浓度超过95重量%。独立于复合材料的密度,其热扩散系数是纯硬脂酸的3-5倍。因此,储热和释放时间分别减少了多达41%和55%。 100次循环后,复合材料保持良好的动态响应和长期循环稳定性,储热密度为122–152 MJ / m 3 。因此,该硬脂酸/ EG相变复合材料表现出优异的综合性能。对于各种类型的热交换器,它也易于制备且灵活。

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