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首页> 外文期刊>Energy Conversion & Management >Thermal energy storage properties of mannitol-fatty acid esters as novel organic solid-liquid phase change materials
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Thermal energy storage properties of mannitol-fatty acid esters as novel organic solid-liquid phase change materials

机译:新型有机固液相变材料甘露醇脂肪酸酯的储热性能

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In this study, four kinds of mannitol-fatty acid esters were synthesized as novel organic phase change materials (PCMs) for thermal energy storage applications. The structural characterization of synthesized mannitol hexastearate (MHS), mannitol hexapalmitate (MHP), mannitol hexamyristate (MHM) and man-nitol hexalaurate (MHL) were carried out using Fourier Transform Infrared (FT-1R), Proton Nuclear Magnetic Resonance (~1H NMR), and ~(13)C NMR spectroscopy methods. Thermal energy storage properties and thermal reliability of the synthesized PCMs were determined using differential scanning calorimetry (DSC) method at a heating rate of 1 ℃/min. DSC results showed that the melting temperatures of the PCMs were in the temperature range of 42-65 ℃ and their latent heat values spanned between 145 and 202 J/g. The latent heats of these PCMs are low compared to mannitol but they fall into the same range as fatty acids. The synthesized PCMs have much lower phase change temperatures and supercooling degree (about 1-8 ℃) and compared to the mannitol. They have also better odor, noncorrosivity and thermal durability properties as compared to the fatty acids. Thermal cycling test consisted of repeated 1000 melting/solidification cycles also revealed that the synthesized PCMs have good thermal reliability. In addition, thermal conductivity of the PCMs was increased significantly by addition of expanded graphite (EG) at 10 wt%. Based on all results it can be concluded that the synthesized PCMs, MHS, MHP, MHM and MHL esters can be considered as promising solid-liquid PCMs for solar heating applications.
机译:在这项研究中,合成了四种甘露醇-脂肪酸酯作为新型有机相变材料(PCM),用于热能存储应用。使用傅立叶变换红外(FT-1R),质子核磁共振(〜1H)对合成的六硬脂酸甘露醇(MHS),六棕榈酸甘露醇(MHP),六肉豆蔻酸甘露醇(MHL)和六甘露醇甘露醇(MHL)进行结构表征NMR)和〜(13)C NMR光谱法。采用差示扫描量热法(DSC)以1℃/ min的升温速率测定了合成PCM的储热性能和热可靠性。 DSC结果表明,PCM的熔化温度在42-65℃之间,潜热值在145-202J / g之间。与甘露醇相比,这些PCM的潜热低,但它们与脂肪酸处于同一范围内。与甘露醇相比,合成的PCM具有低得多的相变温度和过冷度(约1-8℃)。与脂肪酸相比,它们还具有更好的气味,非腐蚀性和耐热性。由重复的1000次熔化/固化循环组成的热循环测试还表明,合成的PCM具有良好的热可靠性。此外,通过添加10 wt%的膨胀石墨(EG),PCM的热导率显着提高。根据所有结果,可以得出结论,合成的PCM,MHS,MHP,MHM和MHL酯可被视为有前途的太阳能供热固液PCM。

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