首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >A novel process for preparing molten salt/expanded graphite composite phase change blocks with good uniformity and small volume expansion
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A novel process for preparing molten salt/expanded graphite composite phase change blocks with good uniformity and small volume expansion

机译:一种制备熔盐/膨胀石墨复合相变块的新方法,具有良好的均匀性和小体积膨胀

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Herein a novel process was explored for preparing molten salt/expanded graphite (EG) composite phase change material (PCM) blocks, which involves mixing a solid molten salt with EG thoroughly, compressing the mixture into a block with a designed shape and then heating the block to a temperature above the melting point of the molten salt followed by cooling. An MgCl2-KCl eutectic salt was used as the PCM, and its EG-based composite PCM block was prepared by this process, in which the optimal mass fraction of the eutectic was determined to be around 85%. The microstructure of the MgCl2-KCl/EG composite PCM block containing 85% the eutectic shows a uniform distribution of the molten salt. The composite PCM block has a melting point of 424.14 degrees C and a solidification point of 418.39 degrees C, and its latent heat values are 161.37 J/g for melting and 160.28 J/g for solidification. Compared with the eutectic salt, the composite PCM block exhibits a reduction in supercooling by 3.7 degrees C and an enhancement in thermal conductivity by 11-fold. It has been verified that the composite PCM block possesses excellent thermal reliability. Furthermore, the composite PCM block has been compared with the one prepared by the conventional method (first adsorption and then compression). It is found that the composite PCM block fabricated by the novel process exhibits better uniformity and smaller volume expansion than the one obtained from the conventional method. The MgCl2-KCl/EG composite block shows great promise in high temperature thermal energy storage systems, and this novel process is very suitable for preparing molten salt/EG composite PCM blocks.
机译:在此探索了一种新方法,用于制备熔盐/膨胀的石墨(例如)复合相变材料(PCM)块,其涉及将固体熔融盐与例如彻底地混合,将混合物压缩成具有设计形状的块,然后加热嵌段到高于熔融盐的熔点之后的温度,然后冷却。使用MgCl 2-KCl共晶盐作为PCM,通过该方法制备其EB的复合PCM嵌段,其中确定共晶的最佳质量分数为约85%。 MgCl2-KCl /例如含有85%共晶的复合PCM嵌段的微观结构显示熔融盐的均匀分布。复合PCM块具有424.14摄氏度的熔点,凝固点为418.39℃,其潜热值为161.37J / g,用于熔融,160.28J / g用于固化。与共晶盐相比,复合PCM块在3.7摄氏度下表现出过冷却的减少,并以11倍的导热率提高。已经验证了复合PCM块具有出色的热可靠性。此外,已经将复合PCM块与通过常规方法制备的(首次吸附然后压缩)进行比较。结果发现,由新方法制造的复合PCM块表现出更好的均匀性和较小的体积膨胀而不是由常规方法获得的膨胀。 MgCl2-KCl /例如复合块在高温热能存储系统中显示出很大的希望,并且这种新方法非常适合制备熔盐/例如复合PCM块。

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