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Preparation and thermal property analysis of a novel phase change heat storage material

机译:新型相变储热材料的制备及热性能分析

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Hydrated salt of aluminium potassium sulfate dodecahydrate (APSD)/expanded graphite (EG) form-stable composite phase change material (PCM) has been prepared. Hydrated salt of aluminium potassium sulfate dodecahydrate used as the PCM was firstly modified by using nucleator and thickener with the aiming at solving the supercooling and phase separation. Sulfurized EG is selected as supporting matrix to overcome leakage and low thermal conductivity of MAPSD. Furthermore, hydrophilic and hydrophobic groups on the surface of the expanded graphite is oriented by carrying out titanate coupling agent, which could restrict the volatilization of crystal water and solve the poor cyclic stability problems of APSD. The thermal performance of modified APSD (MAPSD) and modified EG (MEG)/MAPSD composite PCMs are tested and analyzed by using Differential Scanning Calorimeter (DSC), Hot Disk Thermal Constant Analyzer and a small-scale experimental device. The DSC analysis showed that the melting enthalpy of form-stable composite PCM containing 80 wt% APSD and MAPSD are 473.52 and 641.75 J/g, and their corresponding melting points are 84.39 and 84.34 degrees C, respectively. The 100 times melt-freeze cyclic tests revealed that the mass of MAPSD decreases by 45.57%. However, the mass of MEG/MAPSD composite PCMs decreases by only 7.91% when the sample density (rho) of 900 kg/m(3) and mass fraction of MEG with 20%, which could still maintain its original shape perfectly without any change. What's more, the effective thermal conductivity of MEG/MAPSD composite PCM (6.157 W/(m.K)) is about 11 times higher than that of pure APSD (0.55 W/(m.K)) and Agari-Uno model is used to predict the thermal conductivity of composite PCMs with different MEG contents. The average deviation is only 3.91% between experimental and predicted value. All the results indicate that the form-stable MAPSD/MEG composite PCMs can be considered as high-performance latent heat storage materials and the great potential for practical application in solar thermal utilization. (C) 2019 Elsevier Ltd. All rights reserved.
机译:制备了十二水合硫酸铝铝钾(APSD)/膨胀石墨(EG)形状稳定的复合相变材料(PCM)的水合盐。首先采用成核剂和增稠剂对十二水合铝硫酸钾十二水合硫酸盐进行了改性,以解决过冷和相分离问题。选择硫化的EG作为支撑基质,以克服MAPSD的泄漏和低导热性。此外,通过进行钛酸酯偶联剂使膨胀石墨表面的亲水基和疏水基取向,这可以限制结晶水的挥发并解决APSD的较差的循环稳定性问题。使用差示扫描量热仪(DSC),热盘热常数分析仪和小型实验设备对经过修改的APSD(MAPSD)和经过修改的EG(MEG)/ MAPSD复合PCM的热性能进行了测试和分析。 DSC分析表明,含有80wt%的APSD和MAPSD的形状稳定的复合PCM的熔融焓为473.52和641.75J / g,其相应的熔点分别为84.39和84.34℃。 100次熔冻循环试验表明,MAPSD的质量下降了45.57%。但是,当样品密度(rho)为900 kg / m(3)且MEG的质量分数为20%时,MEG / MAPSD复合PCM的质量仅降低7.91%,仍可以完美地保持其原始形状而无任何变化。而且,MEG / MAPSD复合PCM的有效导热系数(6.157 W /(mK))比纯APSD(0.55 W /(mK))高约11倍,并使用Agari-Uno模型预测导热系数。 MEG含量不同的复合PCM的电导率。实验值和预测值之间的平均偏差仅为3.91%。所有结果表明,形状稳定的MAPSD / MEG复合PCM可以被认为是高性能的潜热存储材料,在太阳能热利用中具有实际应用的巨大潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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