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Liquid metal gallium laden organic phase change material for energy storage: An experimental study

机译:液态金属镓有机相变储能材料的实验研究

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This paper presents the experimental study on the thermophysical behavior, thermal cyclic characteristics and energy storage performance of liquid metal (LM) laden in organic solid-liquid phase change material (PCM) for energy storage. In this view, Gallium (Ga) is added into D-Mannitol (DM) with a weight fraction of 0.1% and 0.5% by dispersion technique using a ball mill. Repeated melting/freezing cycle was carried out for 350 cycles and the samples were characterized using Differential Scanning Calorimetry (DSC), Thermogravimetry Analysis (TGA) and Fourier Transform Infrared (FTIR). The DM/Ga composite PCM showed enhanced thermal conductivity of similar to 8.4%, similar to 27.8% for 0.1 and 0.5 wt % Ga as compared to pure DM. XRD studies reveal that the pure DM exhibited beta polymorphic phase while TGA and FTIR analysis confirm the thermal reliability and chemical stability of composites in the temperature range of 50-200 degrees C. Non isothermal crystal kinetic study proved that the addition of Ga increased the crystallization rate due to heterogeneous nucleation effect and leads to the reduction in subcooling temperature of the PCM. The experimental setup results to test the charging and discharging performance of the composite PCM revealed that the total time for one complete cycle reduced from 97.48 min for pure DM to 84.73 min and 63.92 min for DM-Ga composite with 0.1 wt % and 0.5 wt % respectively. Based on the results obtained, D-Mannitol based composites could be recommended as potential PCM candidates for solar heat and industrial waste heat recovery application due to its high energy density capacity, thermal/chemical stability and good heat transfer performance. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文对载有有机固液相变材料(PCM)的液态金属(LM)的热物理行为,热循环特性和储能性能进行了实验研究。因此,使用球磨机通过分散技术将镓(Ga)以0.1%和0.5%的重量分数添加到D-甘露醇(DM)中。重复进行350次熔化/冷冻循环,并使用差示扫描量热法(DSC),热重分析(TGA)和傅里叶变换红外(FTIR)对样品进行表征。与纯DM相比,DM / Ga复合PCM的导热系数提高了约8.4%,Ga和0.1和0.5 wt%的Ga相似,达到了27.8%。 XRD研究表明,纯DM表现出β多晶相,而TGA和FTIR分析证实了复合材料在50-200摄氏度温度范围内的热可靠性和化学稳定性。非等温晶体动力学研究表明,添加Ga可以提高结晶度由于非均相成核作用导致速度降低,导致PCM的过冷温度降低。用于测试复合材料PCM充电和放电性能的实验设置结果表明,一个完整循环的总时间从纯DM的97.48分钟减少到0.1 wt%和0.5 wt%的DM-Ga复合材料的84.73分钟和63.92分钟分别。根据获得的结果,基于D-甘露醇的复合材料具有高能量密度容量,热/化学稳定性和良好的传热性能,因此可被推荐为太阳能和工业废热回收应用的潜在PCM候选材料。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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