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Thermal Properties of Hexadecane Encapsulated in Poly(divinylbenzene) Particles

机译:聚二乙烯基苯颗粒中十六烷的热学性质

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摘要

The thermal properties of n-hexadecane (HD) encapsulated in crosslinked capsule particles containing a water and/or air domain were studied from the viewpoint of heat-storage applications. The capsule particles were prepared by the microsuspension polymerization of divinylbenzene at 70 C with the self-assembling of phaseseparated polymer method that we developed. In the differential scanning calorimetric thermograms, pure HD had a single solidification temperature (Ts) peak at 15 C, whereas the encapsulated HD containing a water domain had two peaks at 6 and 1 C. That is, the encapsulated HD containing the water domain required a longer time and lower temperature to complete the solidification than pure HD, which was negative for heat-storage applications. However, once the particles were dried and the water domain was replaced with air, the problem with the partially lowered Ts improved. The air domain was also found in the encapsulated HD core after solidification because of the shrinkage of HD. The presence of the air domain did not affect the thermal stability of the encapsulated HD.
机译:从储热应用的角度研究了包封在含有水和/或空气域的交联胶囊颗粒中的正十六烷(HD)的热性能。我们开发了相分离的聚合物自组装方法,通过70℃下二乙烯基苯的微悬浮聚合制备了胶囊颗粒。在差示扫描量热法热分析图中,纯HD在15 C时有一个凝固温度(Ts)峰,而包含水域的封装HD在6和1 C时有两个峰。也就是说,包含所需水域的封装HD与纯HD相比,完成固化所需的时间更长,温度更低,这对蓄热应用不利。但是,一旦将颗粒干燥并且将水域替换为空气,则Ts部分降低的问题得到改善。固化后,由于HD的收缩,在封装的HD核中也发现了空域。空气域的存在不影响封装的HD的热稳定性。

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