首页> 外文期刊>Journal of Energy Storage >High internal phase emulsion templated-polystyrene/carbon nano fiber/hexadecanol composites phase change materials for thermal management applications
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High internal phase emulsion templated-polystyrene/carbon nano fiber/hexadecanol composites phase change materials for thermal management applications

机译:高内相乳液模板 - 聚苯乙烯/碳纳米纤维/十六烷醇复合材料相变材料进行热管理应用

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摘要

Porous high internal phase emulsion templated polymers (PHPs) with/without carbon nanofiber (CNF) frameworks were synthesized for shape-stabilization of hexadecanol (HD) selected as phase change material (PCM) for thermal energy storage (TES) applications. This impregnation process was resulted in creation of seepage-free composite PCMs with high latent heat storage (LHS) capacity and enhanced thermal conductivity. Morphology, chemical structure, LHS properties and thermal stability of prepared composites were characterized by SEM, FT-IR, DSC and TGA techniques. DSC analysis indicated that the PHP/HD and PHP@CNF/HD(80wt%) composites have a LHS capacity of over 200 J/g at about 46–47 °C. The cycled-composite PCMs showed outstanding thermal reliability and chemical stability. Thermal decomposition temperature of HD was considerably extended after impregnation with PHP and PHP/CNF scaffolds. Thermal conductivity of PHP/HD and PHP@CNF/HD was enhanced compared to that of pure HD. The reduction in heat storing/releasing times of PHP@CNF/HD composites relative to PHP/HD composite was proved by considering the measured temperature-time change. Accordingly, especially PHP@CNF/HD composites PCMs have promising prospective for medium temperature-TES practices.
机译:具有/不含碳纳米纤维(CNF)框架的多孔高内相乳液模板(PHPS)被合成用于选择作为相变材料(PCM)的十六烷醇(HD)的形状稳定,用于热能储存(TES)应用。这种浸渍过程导致产生具有高潜热储存(LHS)容量和增强的导热性的无渗透复合PCM。通过SEM,FT-IR,DSC和TGA技术表征制备复合材料的形态,化学结构,LHS性能和热稳定性。 DSC分析表明,PHP / HD和PHP @ CNF / HD(80wt%)复合材料的LHS容量超过200J / g,约46-47℃。循环复合PCM显示出突出的热可靠性和化学稳定性。在用PHP和PHP / CNF支架浸渍后,HD的热分解温度显着延长。与纯HD相比,PHP / HD和PHP @ CNF / HD的热导率得到增强。通过考虑测量的温度 - 时间变化,证明了PHP @ CNF / HD复合材料的热存储/释放时间的减少。因此,尤其是PHP @ CNF / HD复合材料PCM具有对中温度实践的前景。

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