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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 >Synthesis and characterization of ditetradecyl succinate and dioctadecyl succinate as novel phase change materials for thermal energy storage
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Synthesis and characterization of ditetradecyl succinate and dioctadecyl succinate as novel phase change materials for thermal energy storage

机译:二乙二醇琥珀酸酯和二辛酰琥珀酸盐作为热能储存的新型相变材料的合成与表征

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This paper deals with the synthesis, characterization, thermal properties and thermal reliability of 1-tetradecanol and 1-octadecanol-succinic acid esters as a novel solid-liquid phase change materials (PCM) for thermal energy storage (TES). Ditetradecyl succinate (DTS) and dioctadecyl succinate (DOS) were synthesized by using succinic acid and excessive amount of fatty alcohol under vacuum and without catalyst. The esterification reaction yield was found above 95%. High purity ester compounds were characterized structurally by H-1 nuclear magnetic resonance ((HNMR)-H-1) and fourier transform infrared (FT-IR) spectroscopy techniques as thermophysical properties were investigated using a differential scanning calorimeter (DSC) and a thermogravimetric analyzer (TGA). DSC method was exploited for determination of phase change temperature, enthalpy, total enthalpy and specific heat (Cp) of DTS and DOS. Thermophysical properties of the produced esters were similar to fatty alcohols. Phase change temperatures and enthalpies were slightly lower than those of pristine fatty alcohols which were explained by the succinate distortion replaced by hydrogen bonding interactions. The DSC analyses pointed out that the phase change temperatures of TDS for heating period were between 47 degrees C and 46 degrees C as corresponding enthalpy for cooling period was between 202.4 and 197.5 Jg(-1) respectively. The phase change temperature and enthalpy of DOS were between 64 degrees C and 63 degrees C and 194.9 and 191.7 Jg(-1) respectively. In addition, the thermal cycling test including 1000 accelerated cyclings was conducted to determine the thermal reliability of the synthesized PCMs and structural and thermal consistency of the material were checked by post FT-IR and DSC analysis. Morphology and thermal endurance limits of the DTS and DOS were also investigated using POM and TGA respectively. Based on the results, it was concluded that the synthesized novel PCMs had considerable poten
机译:本文涉及1-四癸醇和1-十八烷醇 - 琥珀酸酯的合成,表征,热性能和热可靠性,作为用于热能储存(TES)的新型固液相变材料(PCM)。通过在真空和无催化剂下使用琥珀酸和过量的脂肪醇来合成二乙二基琥珀酸酯(DOS)和二恶英琥珀酸酯(DOS)。酯化反应产率高于95%以上。通过H-1核磁共振((HNMR)-H-1)和傅里叶变换红外(FT-IR)光谱技术在结构上进行高纯度酯化合物,用差分扫描量热计(DSC)和热重分析来研究热神经性质分析仪(TGA)。利用DSC方法来确定DTS和DOS的相变温度,焓,总焓和特定热(CP)。产生的酯的热物理性质与脂肪醇相似。相变温度和焓略低于原始脂肪醇的脂肪醇,其通过氢键相互作用所取代的琥珀酸酯畸变解释。 DSC分析指出,加热时期TDS的相变温度分别在47℃和46摄氏度之间为47℃和46℃,分别在202.4和197.5Jg(-1)之间。相变温度和DOS的焓分别在64℃和63℃和194.9和191.7Jg(-1)之间。另外,进行了包括1000加速循环的热循环试验以确定通过POST FT-IR和DSC分析检查材料的合成PCM的热可靠性,并通过POST FT-IR和DSC分析检查材料的结构和热稠度。还使用POM和TGA研究了DTS和DOS的形态和热耐久性限制。基于结果,得出结论,合成的新型PCM具有相当大的产卵

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