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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >High-chain fatty acid esters of 1-octadecanol as novel organic phase change materials and mathematical correlations for estimating the thermal properties of higher fatty acid esters' homologous series
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High-chain fatty acid esters of 1-octadecanol as novel organic phase change materials and mathematical correlations for estimating the thermal properties of higher fatty acid esters' homologous series

机译:1-十八烷醇的高链脂肪酸酯作为新型有机相变材料及其数学关系式,用于估算高级脂肪酸酯的同源序列的热性能

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摘要

A series of high-chain fatty acid esters of 1-octadecanol (stearyl alcohol) was synthesized with even carbon number fatty acids between C12 and C20 under vacuum and in the absence of catalyst. Ester syntheses were controlled via Fourier transform infrared (FT-IR) and thermo-physical analyses of the products. These esters were particularly investigated in terms of their thermo-physical properties to be further used as Phase Change Materials (PCMs) in thermal energy storage. Purity, phase change temperature, enthalpy, specific heat (C p), thermal decomposition and reliability after 1000 thermal cycles were presented with necessary statistical data. The DSC analyses indicated that the melting temperatures of the high-chain fatty acid esters of stearyl alcohol were between 42 °C and 65 °C with phase change enthalpies above 200 kJ/kg. The results showed that these materials were favorable for low temperature heat transfer applications with their advantageous thermal properties and reliabilities. In addition to the presented novel PCMs, the influence of different higher alcohol and fatty acid combinations on thermal properties of the higher esters' homologous series was also discussed in detail together with the outcomes of the other published researches. The developed empirical correlations provided accurate estimation of phase change temperature and enthalpy values of high-chain fatty acid esters of higher alcohols without any instrumental analyses.
机译:在真空和不存在催化剂的情况下,合成了一系列1-十八醇(硬脂醇)的高链脂肪酸酯,碳原子数为C12至C20,脂肪酸的碳数为偶数。酯的合成是通过傅立叶变换红外(FT-IR)和产物的热物理分析来控制的。对这些酯的热物理性质进行了专门研究,以进一步用作热能存储中的相变材料(PCM)。给出了1000个热循环后的纯度,相变温度,焓,比热(C p),热分解和可靠性,并提供了必要的统计数据。 DSC分析表明,硬脂醇的高链脂肪酸酯的熔融温度在42℃至65℃之间,相变焓高于200kJ / kg。结果表明,这些材料具有良好的热性能和可靠性,非常适合低温传热应用。除了提出的新颖的PCM,还与其他已发表的研究成果一起详细讨论了不同的高级醇和脂肪酸组合对高级酯同源系列的热性能的影响。所建立的经验相关性提供了对高级醇的高链脂肪酸酯的相变温度和焓值的准确估计,而无需任何仪器分析。

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