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Microencapsulation of molten salt in stable silica shell via a water-limited sol-gel process for high temperature thermal energy storage

机译:通过对高温热能储存的水限制溶胶 - 凝胶工艺稳定二氧化硅壳中熔盐微胶囊。

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摘要

Microencapsulated phase change material as high temperature latent heat storage (LHS) has great potential for renewable energy applications. However, high temperature compatible microencapsulation techniques have rarely been reported so far. Successful microencapsulation of molten salt with high melting point and high latent heat is demonstrated in this work. The microcapsules are demonstrated to be thermally stable at a relatively high melting point of the salt (334 degrees C) with a high encapsulation ratio (95.2%) which can be well controlled through a Tetraethyl orthosilicate (TEOS) hydrolysis/condensation process. The demonstrated stability and excellent controllability of this process makes the synthesized KNO3@silica microcapsule the first real demonstration of a controllable micro/nanoencapsulation technique that can be used for high temperature applications without much limitation on PCM selection, especially for molten salts.
机译:微胶囊化相变材料作为高温潜热储存(LHS)具有可再生能源应用的巨大潜力。 然而,到目前为止,很少报告高温兼容的微胶囊化技术。 在这项工作中,证明了具有高熔点和高潜热的熔盐的成功微胶囊。 微胶囊被证明在盐(334℃)的相对高的熔点处热稳定,其具有高封装比(95.2%),其可以通过四乙基外硅酸硅酸盐(TEOS)水解/缩合方法很好地控制。 所描述的稳定性和该过程的优异可控性使得合成的KNO3 @二氧化硅微胶囊可控微/纳米封装技术的第一个实际证明,可用于高温应用,对PCM选择而没有大量限制,特别是对于熔融盐。

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