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Form-Stable Phase Change Materials Based on Eutectic Mixture of Tetradecanol and Fatty Acids for Building Energy Storage: Preparation and Performance Analysis

机译:基于十四烷醇和脂肪酸共晶混合物的形状稳定相变材料用于建筑储能:制备和性能分析

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摘要

This paper is focused on preparation and performance analysis of a series of form-stable phase change materials (FSPCMs), based on eutectic mixtures as phase change materials (PCMs) for thermal energy storage and high-density polyethylene (HDPE)-ethylene-vinyl acetate (EVA) polymer as supporting materials. The PCMs were eutectic mixtures of tetradecanol (TD)–capric acid (CA), TD–lauric acid (LA), and TD–myristic acid (MA), which were rarely explored before. Thermal properties of eutectic mixtures and FSPCMs were measured by differential scanning calorimeter (DSC). The onset melting/solidification temperatures of form-stable PCMs were 19.13 °C/13.32 °C (FS TD–CA PCM), 24.53 °C/24.92 °C (FS TD–LA PCM), and 33.15 °C/30.72 °C (FS TD–MA PCM), respectively, and latent heats were almost greater than 90 J/g. The surface morphologies and chemical stability of form-stable PCM were surveyed by scanning electron microscopy (SEM) and Fourier-transform infrared (FT-IR) spectroscopy, respectively. The thermal cycling test revealed that the thermal reliability of these three form-stable PCMs was good. Thermal storage/release experiment indicated melting/solidification time was shortened by introducing 10 wt % aluminum powder (AP). It is concluded that these FSPCMs can act as potential building thermal storage materials in terms of their satisfactory thermal properties.
机译:本文着眼于基于共晶混合物作为相变材料(PCM)用于热能存储和高密度聚乙烯(HDPE)-乙烯-乙烯基的一系列形状稳定的相变材料(FSPCM)的制备和性能分析醋酸酯(EVA)聚合物作为支撑材料。 PCM是十四烷​​醇(TD)-癸酸(CA),TD-月桂酸(LA)和TD-肉豆蔻酸(MA)的共晶混合物,以前很少探索。通过差示扫描量热仪(DSC)测量共晶混合物和FSPCM的热性能。形状稳定的PCM的开始熔化/凝固温度为19.13°C / 13.32°C(FS TD-CA PCM),24.53°C / 24.92°C(FS TD-LA PCM)和33.15°C / 30.72°C (FS TD-MA PCM),潜热几乎大于90 J / g。形态稳定的PCM的表面形态和化学稳定性分别通过扫描电子显微镜(SEM)和傅立叶变换红外光谱(FT-IR)进行了研究。热循环测试表明,这三种形状稳定的PCM具有良好的热可靠性。热存储/释放实验表明,通过引入10 wt%的铝粉(AP)可以缩短熔融/凝固时间。结论是,就其令人满意的热性能而言,这些FSPCM可以用作潜在的建筑蓄热材料。

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