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Macro-encapsulation and characterization of chloride based inorganic Phase change materials for high temperature thermal energy storage systems

机译:用于高温热能存储系统的氯化物基无机相变材料的宏观封装和表征

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摘要

A novel approach involving the use of ceramic materials was investigated for encapsulating chloride based PCMs with melting points higher than 650 degrees C. Low-cost ceramics with excellent thermal and chemical stability under molten-salt conditions were identified as the encapsulants. The processing procedure for these materials was discerned by systematic porosity distribution and materials compatibility studies. The influence of sintering temperature on the reactivity of feldspar, ball clay, kaolin and the mixture thereof with molten sodium chloride was investigated by IR spectroscopy. The porosity of the sintered ceramic samples was analyzed through water and dye absorption tests, as well as SEM analysis. The results were used for developing an optimum ceramic capsule fabrication procedure, which involved the use of a green ceramic body followed by sintering at 1190 degrees C. Sodium chloride and its eutectic with potassium chloride were used as the PCMs. The selected PCM was poured into and filled the fabricated ceramic capsule through a hole which was sealed at a temperature close to or higher than the melting temperature of the PCM. The fabricated capsules have been tested and have survived more than 150 thermal cycles without showing degradation in their thermo-physical properties.
机译:研究了一种涉及使用陶瓷材料的新颖方法来封装熔点高于650摄氏度的氯化物基PCM。在熔融盐条件下具有出色的热稳定性和化学稳定性的低成本陶瓷被确定为密封剂。通过系统的孔隙率分布和材料相容性研究,可以辨别出这些材料的加工程序。通过红外光谱研究了烧结温度对长石,球形粘土,高岭土及其混合物与熔融氯化钠反应性的影响。通过水和染料吸收测试以及SEM分析来分析烧结陶瓷样品的孔隙率。结果被用于开发最佳的陶瓷胶囊制造程序,该程序包括使用生陶瓷体,然后在1190摄氏度下烧结。氯化钠及其与氯化钾的低共熔物用作PCM。所选择的PCM通过孔被注入并填充到制造的陶瓷囊中,该孔在接近或高于PCM的熔化温度的温度下被密封。制成的胶囊已经过测试,可以经受150个以上的热循环,而其热物理性能不会降低。

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