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Development of thermal heat storage material utilizing fatty acids as solid-liquid phase change materials

机译:利用脂肪酸作为固液相变材料的热蓄热材料的研制

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We have developed low-temperature thermal energy storage material using fatty acids. The fatty acids, were used as solid-liquid phase change materials (PCMs) at temperatures between 0 and 7 deg C.The thermodynamic properries of PCMs were investigated in detail by utilizing a differential scanning calorimeter (DSC). We found that the solid-liquid phase change temperature was freely controllable by adjusting the mixture of the two-component system (capric and lauric acids). Furthermore, we researched the additive effect of unsaturated fatty acids (oleic acid, ricinoleic acid, or linoleic acid), anionic and nonionic surfactants (sodium di (2-ethylhexyl) sulfosuccinate, S 1-4, T 1-4), and surfactants derived from a Paty acid (sodium oleate or sodium laurate). In particular, the addition of 20 wt% sodium oleate was effective to suppress the supercooling temperature and control the solid-liquid phase change temperature between 0 and 7 deg C. No physicochemical degradation of the capric and lauric acids with 20 wt% sodium oleate was found in the 50 recucling tests bymeans of the DSC analusis.
机译:我们开发了使用脂肪酸的低温热能储存材料。在0至7℃之间的温度下使用脂肪酸作为固液相变材料(PCM)。通过利用差示扫描量热计(DSC)详细研究了PCM的热力学提案。我们发现通过调节双组分系统(Capic和月桂酸)的混合物,可以自由地控制固液相变温度。此外,我们研究了不饱和脂肪酸(油酸,蓖麻油酸或亚油酸),阴离子和非离子表面活性剂(二乙基己基)磺糖酸钠,S1-4,T 1-4)和表面活性剂的添加剂效应衍生自PATY酸(钠酸钠或月桂酸钠)。特别地,加入20wt%的油酸钠是有效抑制过冷温度,并控制0至7℃的固液相变温度。没有物理化学降解癸酸和月桂酸,具有20重量%的钠酸钠在50个重点测试中发现,通过DSC分析的副本。

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