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Investigation on Microstructure of Potassium Nitrate/Sodium Nitrate Composites for Solar Storage System

机译:太阳能储存系统硝酸钾/硝酸钠复合材料微观结构研究

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The performance of the material is determined by its structure, i.e., the composition of the material elements of the atomic structure, the molecular structure, and atoms or molecules in space arrangement and the aggregation characteristics. The microstructure of the material has important implications for the material performance. In this paper, five phase change materials, potassium nitrate, sodium nitrate, and the composites of KNO3-NaNO3/graphite (3%, 6%, and 9%), have been studied by the experiment, and the aim is to improve the storage performance of the solar storage system. The results show that potassium nitrate and sodium nitrate are significantly different in microstructure, that is, potassium nitrate is a layered structure and the sodium nitrate is a network structure. And, the graphite as additives can be physically combined with the molten salts, which leads to a different performance and distribution in the mixture. Therefore, it is an effective method in improving the performance of molten salts by using graphite as the supporting material. The results can provide a reference to future choose for solar storage materials.
机译:材料的性能由其结构,即原子结构的材料元素的组成,分子结构和空间布置中的原子或分子的组成和聚集特性。材料的微观结构对材料性能具有重要意义。在本文中,通过实验研究了五个相变材料,硝酸钾,硝酸钠和KnO3-Nano3 /石墨(3%,6%和9%)的复合材料,目的是改善太阳能存储系统的存储性能。结果表明,硝酸钾和硝酸钠在微观结构中显着差异,即硝酸钾是层状结构,硝酸钠是网络结构。并且,作为添加剂的石墨可以与熔盐物理地结合,这导致混合物中的不同性能和分布。因此,它是通过使用石墨作为支撑材料来改善熔融盐性能的有效方法。结果可以提供对未来选择太阳能储存材料的参考。

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