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Erythritol Tetra Myristate and Erythritol Tetra Laurate as Novel Phase Change Materials for Low Temperature Thermal Energy Storage

机译:赤藓糖醇四肉豆蔻酸酯和赤藓糖醇四月桂酸酯作为新型相变材料,用于低温热能存储

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In this study, erythritol tetra myristate and erythritol tetra laurate, as novel phase change materials (PCM) for latent heat thermal energy storage, were synthesized by the direct esterification reaction of the erythritol with myristic and lauric acids. The esterification reactions were proven by using Fourier transform infrared and nuclear magnetic resonance (~1H NMR) spectroscopy techniques. The melting and freezing temperatures and latent heats of the esters were measured using differential scanning calorimetry analysis. The melting temperatures and latent heats of the erythritol tetra myristate and erythritol tetra laurate esters were determined as 10.82 and -9.03℃ and 180.90 and 161.39 J/g, respectively. The thermal cycling test indicated that the synthesized esters had good thermal reliability in terms of the changes in thermal properties after 1,000 thermal cycling. Thermal stability of the PCM was also investigated by using thermal gravimetric analysis. Moreover, the thermal conductivities of the synthesized esters were increased by about 28% for erythritol tetra myristate and 25% for erythritol tetra laurate by addition of 5 wt% expanded graphite. Based on all these results, it can be concluded that the synthesized esters as novel solid-liquid PCM have great potential for low temperature applications, such as transport of blood, operating tables, hot-cold therapies, and refrigerators.
机译:在这项研究中,赤藓糖醇四肉豆蔻酸酯和赤藓糖醇四月桂酸酯作为用于潜热热能储存的新型相变材料(PCM),是通过赤藓糖醇与肉豆蔻酸和月桂酸的直接酯化反应合成的。通过使用傅里叶变换红外和核磁共振(〜1H NMR)光谱技术证明了酯化反应。使用差示扫描量热分析法测量酯的熔融和冻结温度以及潜热。测得的赤藓糖醇四肉豆蔻酸酯和赤藓糖醇四月桂酸酯的熔融温度和潜热分别为10.82和-9.03℃以及180.90和161.39J / g。热循环试验表明,在1000次热循环后,合成酯具有良好的热可靠性。 PCM的热稳定性也通过热重分析进行了研究。此外,通过添加5wt%的膨胀石墨,对于四肉豆蔻酸赤藓糖醇,合成酯的导热率提高了约28%,对于对四月桂酸赤藓糖醇四酯,其导热率提高了约25%。基于所有这些结果,可以得出结论,作为新型固液PCM的合成酯具有低温应用潜力,例如血液的运输,手术台,冷热疗法和冰箱。

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