首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >The shape-stabilized light-to-thermal conversion phase change material based on CH3COONa center dot 3H(2)O as thermal energy storage media
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The shape-stabilized light-to-thermal conversion phase change material based on CH3COONa center dot 3H(2)O as thermal energy storage media

机译:基于CH3COPA中心点3H(2)O作为热能存储介质的形状稳定的光热转换相变材料

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摘要

Latent thermal energy storage using phase change material (PCM) is an effective way to store and transport thermal energy. In this work, a shape-stabilized light-to-thermal conversion composite PCM containing 72.5 wt% CH3COONa center dot 3H(2)O (SAT), 0.4 wt% Na2HPO4, 17.1 wt% expanded graphite (EG) and 10 wt% CuS was prepared using a physical blending and impregnation method. Experimental results showed that Na2HPO4 was an effective nucleating agent, greatly promoting SAT crystallization. EG as supporting material played an important role in preventing melting PCM from leakage. The addition of CuS can increase the light-to-thermal conversion efficiency from 66.9% to 94.1%. The resultant composite PCM had high phase change enthalpy of 194.8 J/g, low supercooling temperature and good thermal cycling performance. After 150 thermal cycles, the melting enthalpy and light-to-thermal conversion efficiency were decreased by only 5.9% and 2.6%, respectively. This material could be suggested as a potential candidate for storage of thermal energy in solar energy utilization.
机译:使用相变材料(PCM)的潜热能存储是存储和运输热能的有效方法。在这项工作中,含有72.5wt%CH 3 COONA中心点3h(2)O(SAT),0.4wt%Na 2 HPO4,17.1wt%膨胀石墨(例如)和10wt%CU的形状稳定的光 - 热转化复合复合PCM使用物理混合和浸渍方法制备。实验结果表明,Na2HPO4是一种有效的成核剂,大大促进饱和结晶。例如,作为支撑材料在防止熔化PCM免受泄漏中起重要作用。 CU的添加可以将光到热转换效率从66.9%增加到94.1%。所得复合PCM高相变焓为194.8J / g,低过冷温度和良好的热循环性能。在150次热循环后,熔融焓和光热转化效率分别仅降低了5.9%和2.6%。可以建议这种材料作为潜在的候选者,用于在太阳能利用中储存热能。

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