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Thermal Properties of Beeswax/CuO Nano Phase-change Material Used for Thermal Energy Storage

机译:用于储热的蜂蜡/ ​​CuO纳米相变材料的热性能

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Experimentation on and implementation of phase-change materials for thermal storage is attracting increasing attention by those seeking a potential resolution to energy issues. This study investigates beeswax as a high thermal-capacity phase-change material with the objective of analyzing the thermal properties and behaviors of beeswax/CuO nano-PCM. The study uses differential scanning calorimetry apparatus to measure the melting temperature and thermal capacity of nano-PCMs. The study found nano-PCM melting temperatures of 63.62°C, 63.59°C, 63.66°C, 63.19°C, and 62.45°C at 0.05, 0.1, 0.15, 0.2, and 0.25 wt%, respectively. FTIR testing found no chemical reaction between CuO and beeswax. The existence of CuO nanoparticles enhanced thermal conductivity of beeswax but reduced its heat capacity. However, the change in latent heat caused no significant effects in the performance of beeswax/CuO. Thus, the results showed that heat transfer of composite beeswax/CuO melts faster than base phase-change material.
机译:寻求相变材料以解决能源问题的人们越来越关注用于蓄热的相变材料的实验和实施。这项研究调查蜂蜡作为一种高热容量的相变材料,目的是分析蜂蜡/ CuO纳米PCM的热性能和行为。该研究使用差示扫描量热仪测量纳米PCM的熔融温度和热容量。研究发现,nano-PCM熔融温度分别为0.05、0.1、0.15、0.2和0.25 wt%,分别为63.62°C,63.59°C,63.66°C,63.19°C和62.45°C。 FTIR测试发现CuO和蜂蜡之间没有化学反应。 CuO纳米粒子的存在增强了蜂蜡的导热性,但降低了其热容。但是,潜热的变化对蜂蜡/ CuO的性能没有明显影响。因此,结果表明,复合蜂蜡/ CuO的传热速度比基础相变材料快。

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